2025/04/29 更新

写真a

ハラ タカヒロ
原 崇裕
Hara Takahiro
所属
先端研究院 先端研究高度支援室 講師
職名
講師
連絡先
メールアドレス
外部リンク

学位

  • 生命科学 ( 京都大学 )

研究キーワード

  • 微小環境、ストローマ細胞

  • 病態生理学

  • 免疫学

  • 実験動物学

  • 癌、血液・造血器疾患

研究分野

  • ライフサイエンス / 免疫学

  • ライフサイエンス / 実験動物学

  • ライフサイエンス / 病態医化学

研究テーマ

  • 生理活性物質を介して免疫システムを制御するストローマ細胞の研究

学歴

  • 京都大学   生命科学研究科   高次情報制御学分野 博士課程

    2003年4月 - 2006年3月

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    国名: 日本国

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  • 京都大学

    - 2006年

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所属学協会

論文

  • Hematopoietic cell-derived IL-15 supports NK cell development in scattered and clustered localization within the bone marrow. 査読 国際誌

    Shinya Abe, Takuma Asahi, Takahiro Hara, Guangwei Cui, Akihiro Shimba, Shizue Tani-Ichi, Kohei Yamada, Kazuko Miyazaki, Hitoshi Miyachi, Satsuki Kitano, Naotoshi Nakamura, Junichi Kikuta, Alexis Vandenbon, Masaki Miyazaki, Ryo Yamada, Toshiaki Ohteki, Masaru Ishii, Veronika Sexl, Takashi Nagasawa, Koichi Ikuta

    Cell reports   113127 - 113127   2023年9月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Natural killer (NK) cells are innate immune cells critical for protective immune responses against infection and cancer. Although NK cells differentiate in the bone marrow (BM) in an interleukin-15 (IL-15)-dependent manner, the cellular source of IL-15 remains elusive. Using NK cell reporter mice, we show that NK cells are localized in the BM in scattered and clustered manners. NK cell clusters overlap with monocyte and dendritic cell accumulations, whereas scattered NK cells require CXCR4 signaling. Using cell-specific IL-15-deficient mice, we show that hematopoietic cells, but not stromal cells, support NK cell development in the BM through IL-15. In particular, IL-15 produced by monocytes and dendritic cells appears to contribute to NK cell development. These results demonstrate that hematopoietic cells are the IL-15 niche for NK cell development in the BM and that BM NK cells are present in scattered and clustered compartments by different mechanisms, suggesting their distinct functions in the immune response.

    DOI: 10.1016/j.celrep.2023.113127

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  • Lung group 2 innate lymphoid cells differentially depend on local IL-7 for their distribution, activation, and maintenance in innate and adaptive immunity-mediated airway inflammation. 査読 国際誌

    Daichi Takami, Shinya Abe, Akihiro Shimba, Takuma Asahi, Guangwei Cui, Shizue Tani-Ichi, Takahiro Hara, Keishi Miyata, Masashi Ikutani, Kiyoshi Takatsu, Yuichi Oike, Koichi Ikuta

    International immunology   2023年7月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    IL-7 is a cytokine critical for the development and maintenance of group 2 innate lymphoid cells (ILC2s). ILC2s are resident in peripheral tissues such as the intestine and lung. However, whether IL-7 produced in the lung plays a role in the maintenance and function of lung ILC2s during airway inflammation remains unknown. IL-7 was expressed in bronchoalveolar epithelial cells and lymphatic endothelial cells (LECs). To investigate the role of local IL-7 in lung ILC2s, we generated two types of IL-7 conditional knockout (IL-7cKO) mice: Sftpc-Cre (SPC-Cre) IL-7cKO mice specific for bronchial epithelial cells and type 2 alveolar epithelial cells and Lyve1-Cre IL-7cKO mice specific for LECs. In steady state, ILC2s were located near airway epithelia, although lung ILC2s were unchanged in the two lines of IL-7cKO mice. In papain-induced airway inflammation dependent on innate immunity, lung ILC2s localized near bronchia via CCR4 expression, and eosinophil infiltration and type 2 cytokine production were reduced in SPC-Cre IL-7cKO mice. In contrast, in house dust mite (HDM)-induced airway inflammation dependent on adaptive immunity, lung ILC2s localized near lymphatic vessels via their CCR2 expression two weeks after the last challenge. Furthermore, lung ILC2s were decreased in Lyve1-Cre IL-7cKO mice in the HDM-induced inflammation due to decreased cell survival and proliferation. Finally, administration of anti-IL-7 antibody attenuated papain-induced inflammation by suppressing the activation of ILC2s. Thus, this study demonstrates that IL-7 produced by bronchoalveolar epithelial cells and LECs differentially controls the activation and maintenance of lung ILC2s, where they are localized in airway inflammation.

    DOI: 10.1093/intimm/dxad029

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  • A circulating subset of iNKT cells mediates antitumor and antiviral immunity. 査読 国際誌

    Guangwei Cui, Akihiro Shimba, Jianshi Jin, Taisaku Ogawa, Yukiko Muramoto, Hitoshi Miyachi, Shinya Abe, Takuma Asahi, Shizue Tani-Ichi, Johannes M Dijkstra, Yayoi Iwamoto, Kirill Kryukov, Yuanbo Zhu, Daichi Takami, Takahiro Hara, Satsuki Kitano, Yan Xu, Hajime Morita, Moyu Zhang, Lynn Zreka, Keishi Miyata, Takashi Kanaya, Shinya Okumura, Takashi Ito, Etsuro Hatano, Yoshimasa Takahashi, Hiroshi Watarai, Yuichi Oike, Tadashi Imanishi, Hiroshi Ohno, Toshiaki Ohteki, Nagahiro Minato, Masato Kubo, Georg A Holländer, Hideki Ueno, Takeshi Noda, Katsuyuki Shiroguchi, Koichi Ikuta

    Science immunology   7 ( 76 )   eabj8760   2022年10月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Invariant natural killer T (iNKT) cells are a group of innate-like T lymphocytes that recognize lipid antigens. They are supposed to be tissue resident and important for systemic and local immune regulation. To investigate the heterogeneity of iNKT cells, we recharacterized iNKT cells in the thymus and peripheral tissues. iNKT cells in the thymus were divided into three subpopulations by the expression of the natural killer cell receptor CD244 and the chemokine receptor CXCR6 and designated as C0 (CD244-CXCR6-), C1 (CD244-CXCR6+), or C2 (CD244+CXCR6+) iNKT cells. The development and maturation of C2 iNKT cells from C0 iNKT cells strictly depended on IL-15 produced by thymic epithelial cells. C2 iNKT cells expressed high levels of IFN-γ and granzymes and exhibited more NK cell-like features, whereas C1 iNKT cells showed more T cell-like characteristics. C2 iNKT cells were influenced by the microbiome and aging and suppressed the expression of the autoimmune regulator AIRE in the thymus. In peripheral tissues, C2 iNKT cells were circulating that were distinct from conventional tissue-resident C1 iNKT cells. Functionally, C2 iNKT cells protected mice from the tumor metastasis of melanoma cells by enhancing antitumor immunity and promoted antiviral immune responses against influenza virus infection. Furthermore, we identified human CD244+CXCR6+ iNKT cells with high cytotoxic properties as a counterpart of mouse C2 iNKT cells. Thus, this study reveals a circulating subset of iNKT cells with NK cell-like properties distinct from conventional tissue-resident iNKT cells.

    DOI: 10.1126/sciimmunol.abj8760

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  • The Roles of IL-7 and IL-15 in Niches for Lymphocyte Progenitors and Immune Cells in Lymphoid Organs. 査読 国際誌

    Koichi Ikuta, Takahiro Hara, Shinya Abe, Takuma Asahi, Daichi Takami, Guangwei Cui

    Current topics in microbiology and immunology   434   83 - 101   2021年

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Lymphoid organs consist of immune cells and stromal cells. The stromal cells produce various cytokines that support the development, maintenance, and response of the immune cells. IL-7 and IL-15 are the major cytokines produced by stromal cells and are essential for the development and maintenance of lymphocytes and innate lymphoid cells (ILCs). In addition, IL-7 is indispensable for the organogenesis of lymphoid organs. However, because the amount of these two cytokines is relatively low, it has been difficult to directly detect their expression. Recently, several groups succeeded in establishing IL-7 and IL-15 reporter mouse lines. As expected, IL-7 and IL-15 were detected in mesenchymal stromal cells in the bone marrow and lymph nodes and in epithelial cells in the thymus. Furthermore, IL-7 and IL-15 were differentially expressed in lymphatic endothelial cells and blood endothelial cells, respectively. In addition to their expression, many groups have analyzed the local functions of IL-7 and IL-15 by using cell-type-specific knockout mice. From these experiments, CXCL12-expressing mesenchymal stromal cells were identified as the major niche for early B cell precursors. Single-cell RNA sequencing (scRNA-seq) analysis has revealed different subpopulations of stromal cells in the lymphoid organs, including those that express both IL-7 and IL-15. Future research is still needed to elucidate which stromal cells serve as the niche for the early precursors of ILCs and NK cells in the bone marrow.

    DOI: 10.1007/978-3-030-86016-5_4

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  • Innate-like CD27+CD45RBhigh γδ T Cells Require TCR Signaling for Homeostasis in Peripheral Lymphoid Organs. 査読 国際誌

    Shizue Tani-Ichi, Keisuke Wagatsuma, Takahiro Hara, Guangwei Cui, Shinya Abe, Hitoshi Miyachi, Satsuki Kitano, Koichi Ikuta

    Journal of immunology (Baltimore, Md. : 1950)   204 ( 10 )   2671 - 2684   2020年5月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    TCR signaling is required for homeostasis of naive αβ T cells. However, whether such a signal is necessary for γδ T cell homeostasis in the periphery remains unknown. In this study, we present evidence that a portion of Vγ2+ γδ T cells, one of the major γδ T cell subsets in the secondary lymphoid organs, requires TCR signaling for homeostasis. To attenuate γδTCR signals, we generated mice lacking Eγ4 (Eγ4-/-), an enhancer located at the 3'-most end of the TCRγ locus. Overall, we found that in thymus, Eγ4 loss altered V-J rearrangement, chromatin accessibility, and transcription of the TCRγ locus in a distance-dependent manner. Vγ2+ γδ T cells in Eγ4-/- mice developed normally both fetal and adult mouse thymi but were relatively reduced in number in spleen and lymph nodes. Although Vγ2 TCR transcription decreased in all subpopulations of Eγ4-/- mice, the number of Vγ2+ γδ T cells decreased and TCR signaling was attenuated only in the innate-like CD27+CD45RBhigh subpopulation in peripheral lymphoid organs. Consistently, CD27+CD45RBhigh Vγ2+ γδ T cells from Eγ4-/- mice transferred into Rag2-deficient mice were not efficiently recovered, suggesting that continuous TCR signaling is required for their homeostasis. Finally, CD27+CD45RBhigh Vγ2+ γδ T cells from Eγ4-/- mice showed impaired TCR-induced activation and antitumor responses. These results suggest that normal homeostasis of innate-like CD27+CD45RBhigh Vγ2+ γδ T cells in peripheral lymphoid organs requires TCR signaling.

    DOI: 10.4049/jimmunol.1801243

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  • Intestinal epithelial cell-derived IL-15 determines local maintenance and maturation of intra-epithelial lymphocytes in the intestine. 査読 国際誌

    Yuanbo Zhu, Guangwei Cui, Eiji Miyauchi, Yuki Nakanishi, Hisa Mukohira, Akihiro Shimba, Shinya Abe, Shizue Tani-Ichi, Takahiro Hara, Hiroshi Nakase, Tsutomu Chiba, Atsuko Sehara-Fujisawa, Hiroshi Seno, Hiroshi Ohno, Koichi Ikuta

    International immunology   32 ( 5 )   307 - 319   2020年5月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Interleukin-15 (IL-15) is a cytokine critical for maintenance of intestinal intra-epithelial lymphocytes (IELs), especially CD8αα + IELs (CD8αα IELs). In the intestine, IL-15 is produced by intestinal epithelial cells (IECs), blood vascular endothelial cells (BECs) and hematopoietic cells. However, the precise role of intestinal IL-15 on IELs is still unknown. To address the question, we generated two kinds of IL-15 conditional knockout (IL-15cKO) mice: villin-Cre (Vil-Cre) and Tie2-Cre IL-15cKO mice. IEC-derived IL-15 was specifically deleted in Vil-Cre IL-15cKO mice, whereas IL-15 produced by BECs and hematopoietic cells was deleted in Tie2-Cre IL-15cKO mice. The cell number and frequency of CD8αα IELs and NK IELs were significantly reduced in Vil-Cre IL-15cKO mice. By contrast, CD8αα IELs were unchanged in Tie2-Cre IL-15cKO mice, indicating that IL-15 produced by BECs and hematopoietic cells is dispensable for CD8αα IELs. Expression of an anti-apoptotic factor, Bcl-2, was decreased, whereas Fas expression was increased in CD8αα IELs of Vil-Cre IL-15cKO mice. Forced expression of Bcl-2 by a Bcl-2 transgene partially restored CD8αα IELs in Vil-Cre IL-15cKO mice, suggesting that some IL-15 signal other than Bcl-2 is required for maintenance of CD8αα IELs. Furthermore, granzyme B production was reduced, whereas PD-1 expression was increased in CD8αα IELs of Vil-Cre IL-15cKO mice. These results collectively suggested that IEC-derived IL-15 is essential for homeostasis of IELs by promoting their survival and functional maturation.

    DOI: 10.1093/intimm/dxz082

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  • IL-7R-Dependent Phosphatidylinositol 3-Kinase Competes with the STAT5 Signal to Modulate T Cell Development and Homeostasis. 査読 国際誌

    Guangwei Cui, Akihiro Shimba, Guangyong Ma, Kazuhiko Takahara, Shizue Tani-Ichi, Yuanbo Zhu, Takuma Asahi, Akifumi Abe, Hitoshi Miyachi, Satsuki Kitano, Takahiro Hara, Jun-Ichirou Yasunaga, Hirotsugu Suwanai, Hisakata Yamada, Masao Matsuoka, Kohjiro Ueki, Yasunobu Yoshikai, Koichi Ikuta

    Journal of immunology (Baltimore, Md. : 1950)   204 ( 4 )   844 - 857   2020年2月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    T cell development and homeostasis requires IL-7R α-chain (IL-7Rα) signaling. Tyrosine Y449 of the IL-7Rα is essential to activate STAT5 and PI3K, whereas PI3K recruitment requires IL-7Rα methionine M452. How IL-7Rα activates and regulates both signaling pathways differentially remains unclear. To characterize differential signaling, we established two lines of IL-7Rα mutant mice: IL-7R-Y449F mice and IL-7R-M452L mice. IL-7R-Y449F mice showed decreased PI3K and STAT5 signals, whereas IL-7R-M452L mice showed decreased PI3K but significantly increased STAT5 signaling, owing to a competition between PI3K and STAT5 signaling through Y449 of IL-7Rα. The number of T, B, and mature innate lymphoid cells were markedly reduced in IL-7R-Y449F mice, whereas IL-7R-M452L mice showed impaired early T cell development and memory precursor effector T cell maintenance with the downregulation of transcription factor T cell factor-1. Peripheral T cell numbers increased in IL-7R-M452L mice with enhanced survival and homeostatic proliferation. Furthermore, although wild type and IL-7R-Y449F mice showed comparable Th1/Th2 differentiation, IL-7R-M452L mice exhibited impaired Th17 differentiation. We conclude that PI3K competes with STAT5 under IL-7Rα and maintains an appropriate signal balance for modulating T cell development and homeostasis. To our knowledge, this study provides a new insight into complex regulation of IL-7Rα signaling, which supports immune development and responses.

    DOI: 10.4049/jimmunol.1900456

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  • Mesenchymal stromal cells in bone marrow express adiponectin and are efficiently targeted by an adiponectin promoter-driven Cre transgene. 査読 国際誌

    Hisa Mukohira, Takahiro Hara, Shinya Abe, Shizue Tani-Ichi, Atsuko Sehara-Fujisawa, Takashi Nagasawa, Kazuyuki Tobe, Koichi Ikuta

    International immunology   31 ( 11 )   729 - 742   2019年10月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Stromal cells in bone marrow (BM) constitute a specific microenvironment supporting the development and maintenance of hematopoietic cells. Adiponectin is a cytokine secreted by adipocytes. Besides its anti-diabetic and anti-atherogenic roles, adiponectin reportedly regulates the development and function of hematopoietic cells in BM. However, it remains unclear whether mesenchymal stromal cells in BM express adiponectin. Here, we show that PDGFRβ+VCAM-1+ stromal cells express adiponectin. Lineage tracing revealed that a majority of PDGFRβ+VCAM-1+ cells were targeted by an adiponectin promoter-driven Cre (Adipoq-Cre) transgene. Additionally, the Adipoq-Cre transgene targets a minority of osteoblasts at a younger age but larger populations are targeted at an older age. Furthermore, the Adipoq-Cre transgene targets almost all CXCL12-abundant reticular (CAR) cells and most of the stromal cells targeted by the Adipoq-Cre transgene are CAR cells. Finally, deletion of interleukin-7 (IL-7) by the Adipoq-Cre transgene resulted in severe impairment of B lymphopoiesis in BM. These results demonstrate that PDGFRβ+VCAM-1+ stromal cells in BM express adiponectin and are targeted by the Adipoq-Cre transgene, suggesting a broader specificity of the Adipoq-Cre transgene.

    DOI: 10.1093/intimm/dxz042

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  • Glucocorticoids Drive Diurnal Oscillations in T Cell Distribution and Responses by Inducing Interleukin-7 Receptor and CXCR4. 査読 国際誌

    Akihiro Shimba, Guangwei Cui, Shizue Tani-Ichi, Makoto Ogawa, Shinya Abe, Fumie Okazaki, Satsuki Kitano, Hitoshi Miyachi, Hisakata Yamada, Takahiro Hara, Yasunobu Yoshikai, Takashi Nagasawa, Günther Schütz, Koichi Ikuta

    Immunity   48 ( 2 )   286 - 298   2018年2月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Glucocorticoids are steroid hormones with strong anti-inflammatory and immunosuppressive effects that are produced in a diurnal fashion. Although glucocorticoids have the potential to induce interleukin-7 receptor (IL-7R) expression in T cells, whether they control T cell homeostasis and responses at physiological concentrations remains unclear. We found that glucocorticoid receptor signaling induces IL-7R expression in mouse T cells by binding to an enhancer of the IL-7Rα locus, with a peak at midnight and a trough at midday. This diurnal induction of IL-7R supported the survival of T cells and their redistribution between lymph nodes, spleen, and blood by controlling expression of the chemokine receptor CXCR4. In mice, T cell accumulation in the spleen at night enhanced immune responses against soluble antigens and systemic bacterial infection. Our results reveal the immunoenhancing role of glucocorticoids in adaptive immunity and provide insight into how immune function is regulated by the diurnal rhythm.

    DOI: 10.1016/j.immuni.2018.01.004

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  • Hematopoietic Stem Cell Niches Produce Lineage-Instructive Signals to Control Multipotent Progenitor Differentiation. 査読 国際誌

    (* Co-first author, # Corresponding author) Gomes AC*, Hara T* #, Lim VY*, Herndler-Brandstetter D, Nevius E, Sugiyama T, Tani-Ichi S, Schlenner S, Richie E, Rodewald HR, Flavell RA, Nagasawa T, Ikuta K, Pereira JP#

    Immunity   45 ( 6 )   1219 - 1231   2016年12月

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    担当区分:責任著者   記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:CELL PRESS  

    Hematopoietic stem cells (HSCs) self-renew in bone marrow niches formed by mesenchymal progenitors and endothelial cells expressing the chemokine CXCL12, but whether a separate niche instructs multipotent progenitor (MPP) differentiation remains unclear. We show that MPPs resided in HSC niches, where they encountered lineage-instructive differentiation signals. Conditional deletion of the chemokine receptor CXCR4 in MPPs reduced differentiation into common lymphoid progenitors (CLPs), which decreased lymphopoiesis. CXCR4 was required for CLP positioning near Interleukin-7+ (IL-7) cells and for optimal IL-7 receptor signaling. IL-7+ cells expressed CXCL12 and the cytokine SCF, were mesenchymal progenitors capable of differentiation into osteoblasts and adipocytes, and comprised a minor subset of sinusoidal endothelial cells. Conditional Il7 deletion in mesenchymal progenitors reduced B-lineage committed CLPs, while conditional Cxcl12 or Scf deletion from IL-7+ cells reduced HSC and MPP numbers. Thus, HSC maintenance and multilineage differentiation are distinct cell lineage decisions that are both controlled by HSC niches.

    DOI: 10.1016/j.immuni.2016.11.004

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  • Thy1+IL-7+ lymphatic endothelial cells in iBALT provide a survival niche for memory T-helper cells in allergic airway inflammation. 査読 国際誌

    Kenta Shinoda, Kiyoshi Hirahara, Tomohisa Iinuma, Tomomi Ichikawa, Akane S Suzuki, Kaoru Sugaya, Damon J Tumes, Heizaburo Yamamoto, Takahiro Hara, Shizue Tani-Ichi, Koichi Ikuta, Yoshitaka Okamoto, Toshinori Nakayama

    Proceedings of the National Academy of Sciences of the United States of America   113 ( 20 )   E2842-51 - E2851   2016年5月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:NATL ACAD SCIENCES  

    Memory CD4(+) T helper (Th) cells are central to long-term protection against pathogens, but they can also be pathogenic and drive chronic inflammatory disorders. How these pathogenic memory Th cells are maintained, particularly at sites of local inflammation, remains unclear. We found that ectopic lymphoid-like structures called inducible bronchus-associated lymphoid tissue (iBALT) are formed during chronic allergic inflammation in the lung, and that memory-type pathogenic Th2 (Tpath2) cells capable of driving allergic inflammation are maintained within the iBALT structures. The maintenance of memory Th2 cells within iBALT is supported by Thy1(+)IL-7-producing lymphatic endothelial cells (LECs). The Thy1(+)IL-7-producing LECs express IL-33 and T-cell-attracting chemokines CCL21 and CCL19. Moreover, ectopic lymphoid structures consisting of memory CD4(+) T cells and IL-7(+)IL-33(+) LECs were found in nasal polyps of patients with eosinophilic chronic rhinosinusitis. Thus, Thy1(+)IL-7-producing LECs control chronic allergic airway inflammation by providing a survival niche for memory-type Tpath2 cells.

    DOI: 10.1073/pnas.1512600113

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  • An Enhancer of the IL-7 Receptor α-Chain Locus Controls IL-7 Receptor Expression and Maintenance of Peripheral T Cells. 査読 国際誌

    Abe A, Tani-ichi S, Shitara S, Cui G, Yamada H, Miyachi H, Kitano S, Hara T, Abe R, Yoshikai Y, Ikuta K

    Journal of immunology (Baltimore, Md. : 1950)   195 ( 7 )   3129 - 38   2015年10月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    DOI: 10.4049/jimmunol.1302447

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  • STAT5 Orchestrates Local Epigenetic Changes for Chromatin Accessibility and Rearrangements by Direct Binding to the TCRγ Locus. 査読 国際誌

    Wagatsuma K, Tani-ichi S, Liang B, Shitara S, Ishihara K, Abe M, Miyachi H, Kitano S, Hara T, Nanno M, Ishikawa H, Sakimura K, Nakao M, Kimura H, Ikuta K

    Journal of immunology (Baltimore, Md. : 1950)   195 ( 4 )   1804 - 14   2015年8月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    DOI: 10.4049/jimmunol.1302456

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  • Characterization of the IL-15 niche in primary and secondary lymphoid organs in vivo. 査読 国際誌

    Guangwei Cui, Takahiro Hara, Szandor Simmons, Keisuke Wagatsuma, Akifumi Abe, Hitoshi Miyachi, Satsuki Kitano, Masaru Ishii, Shizue Tani-ichi, Koichi Ikuta

    Proceedings of the National Academy of Sciences of the United States of America   111 ( 5 )   1915 - 20   2014年2月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:NATL ACAD SCIENCES  

    IL-15 is a cytokine critical for development, maintenance, and response of T cells, natural killer (NK) cells, NK T cells, and dendritic cells. However, the identity and distribution of IL-15-expressing cells in lymphoid organs are not well understood. To address these questions, we established and analyzed IL-15-CFP knock-in mice. We found that IL-15 was highly expressed in thymic medulla, and medullary thymic epithelial cells with high MHC class II expression were the major source of IL-15. In bone marrow, IL-15 was detected primarily in VCAM-1(+)PDGFRβ(+)CD31(-)Sca-1(-) stromal cells, which corresponded to previously described CXCL12-abundant reticular cells. In lymph nodes, IL-15-expressing cells were mainly distributed in the T-cell zone and medulla. IL-15 was expressed in some fibroblastic reticular cells and gp38(-)CD31(-) double-negative stromal cells in the T-cell zone. Blood endothelial cells, including all high endothelial venules, also expressed high IL-15 levels in lymph nodes, whereas lymphatic endothelial cells (LECs) lacked IL-15 expression. In spleen, IL-15 was expressed in VCAM-1(+) stromal cells, where its expression increased as mice aged. Finally, IL-15 expression in blood and LECs of peripheral lymphoid organs significantly increased in LPS-induced inflammation. Overall, we have identified and characterized several IL-15-expressing cells in primary and secondary lymphoid organs, providing a unique perspective of IL-15 niche in immune microenvironment. This study also suggests that some stromal cells express IL-7 and IL-15 differentially and suggests a way to functionally classify different stromal cell subsets.

    DOI: 10.1073/pnas.1318281111

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  • Environments of B cell development 査読

    Motokazu Tsuneto, Ekaterina Kajikhina, Katharina Seiler, Andreas Reimer, Julia Tornack, Corinne Bouquet, Szandor Simmons, Marko Knoll, Ingrid Wolf, Koji Tokoyoda, Anja Hauser, Takahiro Hara, Shizue Tani-ichi, Koichi Ikuta, Joachim R. Gruen, Andreas Gruetzkau, Niklas Engels, Juergen Wienands, Yuki Yanagisawa, Kazuo Ohnishi, Fritz Melchers

    IMMUNOLOGY LETTERS   157 ( 1-2 )   60 - 63   2014年1月

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    記述言語:英語   出版者・発行元:ELSEVIER SCIENCE BV  

    B lymphocyte development in the mouse begins with the generation of long-term reconstituting, pluripotent hematopoietic stem cells, over multipotent myeloid/lymphoid progenitors and common lymphoid progenitors to B-lineage committed pro/pre B and pre B cells, which first express pre B cell receptors and then immunoglobulins, B cell receptors, to generate the repertoires of peripheral B cells. This development is influenced and guided by cells of non-hematopoietic and hematopoietic origins. We review here some of the recent developments, and our contributions in this fascinating field of developmental immunology. (C) 2013 Elsevier B.V. All rights reserved.

    DOI: 10.1016/j.imlet.2013.11.011

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  • B-cell progenitors and precursors change their microenvironment in fetal liver during early development. 査読 国際誌

    Motokazu Tsuneto, Koji Tokoyoda, Ekaterina Kajikhina, Anja E Hauser, Takahiro Hara, Shizue Tani-Ichi, Koichi Ikuta, Fritz Melchers

    Stem cells (Dayton, Ohio)   31 ( 12 )   2800 - 12   2013年12月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:WILEY-BLACKWELL  

    The microenvironments, in which B lymphocytes develop in fetal liver, are largely still unknown. Among the nonhematopoietic cells, we have identified and FACS-separated two subpopulations, CD45(-) TER119(-) VCAM-1(+) cells that are either CD105(high) LYVE-1(high) or CD105(low) ALCAM(high) . Immunohistochemical analyses find three of four c-Kit(+) IL-7Rα(+) B220(low) CD19(-) SLC(-) B progenitors in contact with vascular endothelial-type LYVE-1(high) cells on embryonic day 13.5. One day later c-Kit(+) IL-7Rα(+) cells develop to CD19(- and +) , SLC-expressing, DHJH-rearranged pre/pro and pro/preB-I cells. Less than 10% are still in contact with LYVE-1(high) cells, but half of them are now in contact with mesenchymally derived ALCAM(high) liver cells. All of these ALCAM(high) cells, but not the LYVE-1(high) cells produce IL-7 and CXCL12, while both produce CXCL10. Progenitors and pro/preB-I cells are chemoattracted in vitro toward CXCL10 and 12, suggesting that lymphoid progenitors with Ig gene loci in germline configuration enter the developing fetal liver at E13.5 from vascular endothelium, attracted by CXCL10, and then migrate within a day to an ALCAM(high) liver cell microenvironment, differentiating to DHJH-rearranging, surrogate light chain-expressing pre/proB and pro/preB-I cells, attracted by CXCL10 and 12. Between E15.5 and E16.5 preB-I cells expand 10-fold in continued contact with ALCAM(high) cells and begin VH- to DHJH-rearrangements in further differentiated c-Kit(-) IL-7Rα(-) preBII cells. STEM Cells 2013;31:2800-2812.

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  • CD49b-dependent establishment of T helper cell memory. 査読 国際誌

    Asami Hanazawa, Koji Hayashizaki, Kenta Shinoda, Hideo Yagita, Ko Okumura, Max Löhning, Takahiro Hara, Shizue Tani-ichi, Koichi Ikuta, Beate Eckes, Andreas Radbruch, Koji Tokoyoda, Toshinori Nakayama

    Immunology and cell biology   91 ( 8 )   524 - 31   2013年9月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:NATURE PUBLISHING GROUP  

    CD4 T cells play a key role in immunological memory. We have demonstrated that professional memory CD4 T cells reside and rest in the bone marrow (BM). However, the molecular mechanisms of their establishment in the BM and their maintenance remain unclear. We here show that memory CD4 T cells express high levels of CD49b and that CD49b-deficient or -blocked memory CD4 T-cell precursors fail to migrate from blood into the marrow of the bone, and they especially fail to transmigrate through sinusoidal endothelial cells of the BM. In the marrow, memory CD4 T cells and the precursors contact stromal cells expressing collagen II that are specific ligands for CD49b. Interestingly, memory CD4 T cells on day 117 of an immune response also dock on IL-7(+)/collagen XI(+) stromal cells, whereas memory precursors on day 12 do not. These results indicate that the collagen receptor CD49b is required for the migration of memory CD4 T-cell precursors into their survival niches of the bone marrow.

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  • IL-7 produced by thymic epithelial cells plays a major role in the development of thymocytes and TCRγδ+ intraepithelial lymphocytes. 査読 国際誌

    (* Co-first author) Shitara S*, Hara T*, Liang B, Wagatsuma K, Zuklys S, Holländer GA, Nakase H, Chiba T, Tani-ichi S, Ikuta K.

    Journal of immunology (Baltimore, Md. : 1950)   190 ( 12 )   6173 - 9   2013年6月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

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  • Interleukin-7 receptor controls development and maturation of late stages of thymocyte subpopulations. 査読 国際誌

    Shizue Tani-ichi, Akihiro Shimba, Keisuke Wagatsuma, Hitoshi Miyachi, Satsuki Kitano, Kumiko Imai, Takahiro Hara, Koichi Ikuta

    Proceedings of the National Academy of Sciences of the United States of America   110 ( 2 )   612 - 7   2013年1月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:NATL ACAD SCIENCES  

    Interleukin (IL)-7 is a cytokine essential for T lymphocyte development and homeostasis. However, little is known about the roles of IL-7 receptor α-chain (IL-7Rα) in late stages of T-cell development. To address this question, we established IL-7Rα-floxed mice and crossed them with CD4-Cre transgenic mice. Resultant IL-7R conditional knockout (IL-7RcKO) mice exhibited marked reduction in CD8 single positive (SP) T cells, regulatory T cells (Tregs), and natural killer T (NKT) cells in thymus. The proportion and proliferation of both mature CD4SP and CD8SP thymocytes were decreased without affecting Runx expression. In addition, expression of the glucocorticoid-induced TNF receptor was reduced in CD4SP and CD8SP thymocytes, and expression of CD5 was decreased in CD8SP thymocytes. IL-7RcKO mice also showed impaired Treg and NKT cell proliferation and inhibition of NKT cell maturation. Bcl-2 expression was reduced in CD4SP and CD8SP thymocytes but not in Tregs and NKT cells, and introduction of a Bcl-2 transgene rescued frequency and CD5 expression of CD8SP thymocytes. Furthermore, IL-7RcKO mice exhibited greatly increased numbers of B cells and, to a lesser extent, γδ T and dendritic cells in thymus. Overall, this study demonstrates that IL-7Rα differentially controls development and maturation of thymocyte subpopulations in late developmental stages and suggests that IL-7R expression on αβ T cells suppresses development of other cell lineages in thymus.

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  • Role of hepatocyte-derived IL-7 in maintenance of intrahepatic NKT cells and T cells and development of B cells in fetal liver. 査読 国際誌

    Bingfei Liang, Takahiro Hara, Keisuke Wagatsuma, Jia Zhang, Kazushige Maki, Hitoshi Miyachi, Satsuki Kitano, Chihiro Yabe-Nishimura, Shizue Tani-Ichi, Koichi Ikuta

    Journal of immunology (Baltimore, Md. : 1950)   189 ( 9 )   4444 - 50   2012年11月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:AMER ASSOC IMMUNOLOGISTS  

    The liver contains a variety of resident immune cells, such as NK cells, NKT cells, T cells, macrophages, and dendritic cells. However, little is known about how IL-7, which is produced by hepatocytes, functions locally in development and maintenance of liver immune cells. To address this question, we established IL-7-floxed mice and crossed them with albumin promoter-driven Cre (Alb-Cre) transgenic mice to establish conditional knockout of IL-7 in hepatocytes. The levels of IL-7 transcripts were reduced 10-fold in hepatocyte fraction. We found that the absolute numbers of NKT and T cells were significantly decreased in adult liver of IL-7(f/f) Alb-Cre mice compared with IL-7(f/f) control mice. In contrast, NK cells, dendritic cells, and B cells were unchanged in the IL-7(f/f) Alb-Cre liver. The number of Vα14(+) invariant NKT cells was significantly reduced in liver, but not in thymus and spleen, of IL-7(f/f) Alb-Cre mice. Furthermore, B cell development was impaired in perinatal liver of IL-7(f/f) Alb-Cre mice. This study demonstrates that hepatocyte-derived IL-7 plays an indispensable role in maintenance of NKT and T cells in adult liver and development of B cells in fetal liver, and suggests that hepatocytes provide a unique IL-7 niche for intrahepatic lymphocytes.

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  • Identification of IL-7-producing cells in primary and secondary lymphoid organs using IL-7-GFP knock-in mice. 査読 国際誌

    Takahiro Hara, Soichiro Shitara, Kumiko Imai, Hitoshi Miyachi, Satsuki Kitano, Hisayuki Yao, Shizue Tani-ichi, Koichi Ikuta

    Journal of immunology (Baltimore, Md. : 1950)   189 ( 4 )   1577 - 84   2012年8月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:AMER ASSOC IMMUNOLOGISTS  

    IL-7 is a cytokine crucial for development and maintenance of lymphocytes and other hematopoietic cells. However, how IL-7-expressing cells are distributed in lymphoid organs is not well known. To address this question, we established and analyzed IL-7-GFP knock-in mice. Thymic epithelial cells (TECs) expressed high GFP levels in the cortex and medulla, as detected with an anti-GFP Ab. Thymic mesenchymal cells also expressed GFP. Flow cytometry analysis suggested that cortical TECs expressed higher GFP levels than did medullary TECs. In bone marrow, immunohistochemistry indicated high levels of GFP in many VCAM-1(+) mesenchymal stromal cells and in some VCAM-1(-) cells. Additionally, half of the VCAM-1(+)CD31(-) stromal cells and some platelet-derived growth factor receptor α(+) stromal cells were GFP(+), as detected by flow cytometry. Moreover, we detected GFP expression in fibroblastic reticular cells in the T cell zone and cortical ridge of lymph nodes. Remarkably, lymphatic endothelial cells (LECs) expressed GFP at high levels within the lymph node medulla, skin epidermis, and intestinal tissues. Additionally, we detected abundant IL-7 transcripts in isolated LECs, suggesting that LECs produce IL-7, a heretofore unknown finding. Furthermore, GFP is expressed in a subpopulation of intestinal epithelial cells, and that expression was markedly upregulated in a dextran sulfate sodium-induced acute colitis model. Overall, IL-7-GFP knock-in mice serve as a unique and powerful tool to examine the identity and distribution of IL-7-expressing cells in vivo.

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  • A transmembrane chemokine, CXC chemokine ligand 16, expressed by lymph node fibroblastic reticular cells has the potential to regulate T cell migration and adhesion. 査読 国際誌

    Takahiro Hara, Tomoya Katakai, Jong-Hwan Lee, Yukiko Nambu, Natsuki Nakajima-Nagata, Hiroyuki Gonda, Manabu Sugai, Akira Shimizu

    International immunology   18 ( 2 )   301 - 11   2006年2月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:OXFORD UNIV PRESS  

    Stromal cells in lymphoid tissues provide microenvironmental fields required for the triggering of efficient immune responses. Fibroblastic reticular cells (FRCs) are one of the integral constituents of such stromal fields; they construct the reticular network and are considered to regulate immune cells' behavior. However, the factors that mediate the interaction between lymphocytes and FRCs are poorly understood. Here we show that a mouse lymph node (LN)-derived FRC cell line, BLS4, expresses a transmembrane chemokine, CXC chemokine ligand (CXCL) 16, in response to tumor necrosis factor alpha (TNFalpha) and IFNgamma. TNFalpha-induced expression of CXCL16 depends on NFkappaB, p38 MAPK and PKA. Matrix metalloproteinase activity is required for producing soluble CXCL16 in the culture supernatant, likely via shedding at the juxtamembrane region of the extracellular domain. IL-12 enhances the expression of CXCR6 in anti-CD3/CD28-stimulated CD8+ T cells and their adhesion to the BLS4 cell surface in a TNFalpha-dependent fashion. The adherence is significantly inhibited in the presence of both anti-CXCL16 and anti-vascular cell adhesion molecule 1 (VCAM-1) antibodies. CXCL16 expression is also detected in the FRCs in LN sections and in gp38+VCAM-1+ FRCs isolated from LNs. Taken together, these findings suggest that CXCL16 is an important mediator of lymphocyte-stromal interaction within lymphoid tissues.

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  • Roles of p-ERM and Rho-ROCK signaling in lymphocyte polarity and uropod formation. 査読 国際誌

    Jong-Hwan Lee, Tomoya Katakai, Takahiro Hara, Hiroyuki Gonda, Manabu Sugai, Akira Shimizu

    The Journal of cell biology   167 ( 2 )   327 - 37   2004年10月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:ROCKEFELLER UNIV PRESS  

    Front-rear asymmetry in motile cells is crucial for efficient directional movement. The uropod in migrating lymphocytes is a posterior protrusion in which several proteins, including CD44 and ezrin/radixin/moesin (ERM), are concentrated. In EL4.G8 T-lymphoma cells, Thr567 phosphorylation in the COOH-terminal domain of ezrin regulates the selective localization of ezrin in the uropod. Overexpression of the phosphorylation-mimetic T567D ezrin enhances uropod size and cell migration. T567D ezrin also induces construction of the CD44-associated polar cap, which covers the posterior cytoplasm in staurosporine-treated, uropod-disrupted EL4.G8 cells or in naturally unpolarized X63.653 myeloma cells in an actin cytoskeleton-dependent manner. Rho-associated coiled coil-containing protein kinase (ROCK) inhibitor Y-27632 disrupts the uropod but not the polar cap, indicating that Rho-ROCK signaling is required for posterior protrusion but not for ERM phosphorylation. Phosphorylated ezrin associates with Dbl through its NH2-terminal domain and causes Rho activation. Moreover, constitutively active Q63L RhoA is selectively localized in the rear part of the cells. Thus, phosphorylated ERM has a potential function in establishing plasma membrane "posteriority" in the induction of the uropod in T lymphocytes.

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  • Lymph node fibroblastic reticular cells construct the stromal reticulum via contact with lymphocytes. 査読 国際誌

    Tomoya Katakai, Takahiro Hara, Manabu Sugai, Hiroyuki Gonda, Akira Shimizu

    The Journal of experimental medicine   200 ( 6 )   783 - 95   2004年9月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:ROCKEFELLER UNIV PRESS  

    The sophisticated microarchitecture of the lymph node, which is largely supported by a reticular network of fibroblastic reticular cells (FRCs) and extracellular matrix, is essential for immune function. How FRCs form the elaborate network and remodel it in response to lymphocyte activation is not understood. In this work, we established ERTR7(+)gp38(+)VCAM-1(+) FRC lines and examined the production of the ER-TR7 antigen. Multiple chemokines produced by FRCs induced T cell and dendritic cell chemotaxis and adhesion to the FRC surface. FRCs can secrete the ER-TR7 antigen as an extracellular matrix component to make a reticular meshwork in response to contact with lymphocytes. The formation of the meshwork is induced by stimulation with tumor necrosis factor-alpha or lymphotoxin-alpha in combination with agonistic antibody to lymphotoxin-beta receptor in a nuclear factor-kappaB (RelA)-dependent manner. These findings suggest that signals from lymphocytes induce FRCs to form the network that supports the movement and interactions of immune effectors within the lymph node.

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  • A novel reticular stromal structure in lymph node cortex: an immuno-platform for interactions among dendritic cells, T cells and B cells. 査読 国際誌

    Tomoya Katakai, Takahiro Hara, Jong-Hwan Lee, Hiroyuki Gonda, Manabu Sugai, Akira Shimizu

    International immunology   16 ( 8 )   1133 - 42   2004年8月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:OXFORD UNIV PRESS  

    For efficient adaptive immunity, the lymph nodes (LNs) are equipped with a strategically organized microarchitecture, which is largely supported by the reticular network (RN). The RN can be clearly visualized by fluorescence immunohistochemistry coupled with confocal imaging using a monoclonal antibody, ER-TR7, and can be subdivided into four structurally distinct regions, each of which correlates well with the location of distinct immune cell subsets. In addition, we noticed a characteristic reticular structure designated the 'cortical ridge' at the boundary of the T and B zone, in which dendritic cells are preferentially accumulated. In vitro adhesion assays of frozen sections demonstrated a preference of dendritic cells for the cortical ridge rather than the deeper cortex. Adoptive transfer experiments also demonstrated that antigen-bearing dendritic cells migrated to this region from peripheral tissues, especially in the vicinity of the high endothelial venules, and were anchored on the reticular fibers waiting to interact with the antigen-specific T cells. Taken together, the findings obtained in this study provide new insights into how the LN stromal reticulum works as a specialized 'immuno-platform' for tissue compartmentalization and the immune response.

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  • Th1-biased tertiary lymphoid tissue supported by CXC chemokine ligand 13-producing stromal network in chronic lesions of autoimmune gastritis. 査読 国際誌

    Tomoya Katakai, Takahiro Hara, Manabu Sugai, Hiroyuki Gonda, Akira Shimizu

    Journal of immunology (Baltimore, Md. : 1950)   171 ( 8 )   4359 - 68   2003年10月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:AMER ASSOC IMMUNOLOGISTS  

    Secondary lymphoid tissue is developmentally programmed and characterized by well-ordered compartmentalization of lymphocyte subsets and specialized stromal cells supporting the tissue architecture. By contrast, tertiary lymphoid tissue is defined as that induced in ectopic sites by inflammation, although its immunological role is largely unknown. In this study, we characterize the lymphoid tissue induced in the chronic lesion of murine autoimmune gastritis (AIG). Within the lymphoid cluster in the gastric mucosa, there is a clear segregation of T and B cells. Follicle-like B cell areas are always located on the luminal side of the mucosa, while T cells are located in the basal part. A typical lymphoid reticular network and follicular dendritic cells support the structure. Importantly, complement receptor 1(+) follicular dendritic cells within the follicle express a B cell homing chemokine, CXC chemokine ligand 13. The number and size of the clusters correlate with the age of the mice and the serum autoantibody titer, suggesting the functional importance of the clusters in local Ab production, although involvement of the autoantibody in the disease progression is still unclear. AIG gastric lesions are known to constitute a Th1-biased, memory T cell-dependent immunomicroenvironment. The expression pattern of cytokines, including lymphotoxin-beta, and chemokines in the AIG stomach is consistent with this observation. Taken together, these facts suggest that, during the chronic phase of autoimmunity, long-lasting lymphocyte infiltration probably induces a unique tertiary lymphoid tissue that has a function distinct from that of regional lymph nodes. These neolymphoid tissues may maintain the local self reactivity supporting the vicious cycle of Th1-type reaction as well as autoantibody production.

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  • Chemokine-independent preference for T-helper-1 cells in transendothelial migration. 査読 国際誌

    Tomoya Katakai, Takahiro Hara, Manabu Sugai, Hiroyuki Gonda, Yukiko Nambu, Eishou Matsuda, Yasutoshi Agata, Akira Shimizu

    The Journal of biological chemistry   277 ( 52 )   50948 - 58   2002年12月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC  

    We analyzed differences in the transendothelial migration (TEM) ability of T-helper (Th)-1 and Th2 cells across a murine endothelial cell line (F-2) under static conditions. The TEM abilities of Th1 cells from mice bearing autoimmune diseases and antigen-specific Th1 cell lines were severalfold higher than those of Th2 cells and lines of the same origin. These preferences were observed without exogenous chemoattractant and were insensitive to pertussis toxin, which completely blocks TEM induced by exogenous chemoattractants. Antibodies against LFA-1 and ICAM-1 as well as CD44 markedly blocked the TEM of Th1 cells. TEM ability was also blocked by pharmacological inhibitors of Src family protein-tyrosine kinases (PP2 and herbimycin A), phosphatidylinositol 3-kinase (wortmannin), and phosphatidylinositol-specific phospholipase C (). Cross-linking of CD44 strongly induced highly elongated morphology in Th1 lines, but weakly in Th2 lines. The pharmacological inhibitors that blocked TEM also inhibited this morphological change, whereas pertussis toxin did not. These data indicate that there are signaling pathways for TEM independent of chemokine attraction, but through adhesion molecules including CD44, and that the preferential TEM ability of Th1 over Th2 cells is formed, at least in part, by intrinsic differences in these pathways.

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書籍等出版物

  • 多能造血前駆細胞からリンパ球までの分化を方向付ける骨髄IL-7ニッチの同定

    原 崇裕( 担当: 単著)

    医学のあゆみ  2017年6月 

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  • 生体内リンパ器官におけるサイトカインニッチの解明

    生田宏一, 崔 広為, 原 崇裕( 担当: 共著)

    感染・炎症・免疫  2015年 

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  • T細胞における IL-7レセプターの転写制御と機能

    谷一靖江, 原 崇裕, 生田宏一

    臨床免疫・アレルギー科  2014年 

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  • 感染・炎症・免疫 第43巻

    原 崇裕

    鳥居薬品株式会社  2014年 

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    総ページ数:3  

    CiNii Research

  • 肝臓IL-7 の新たな機能

    生田宏一, 原 崇裕, 谷一靖江( 担当: 共著)

    感染・炎症・免疫  2013年 

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  • IL-7産生細胞のリンパ組織内分布

    原 崇裕, 生田 宏一

    医学のあゆみ  2013年 

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  • 医学のあゆみ Vol.246

    原 崇裕

    医歯薬出版株式会社  2013年 

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    総ページ数:2  

    CiNii Research

  • 胸腺上皮細胞が産生するサイトカインとT細胞の分化 (特集 胸腺におけるT細胞の分化とその機序)

    生田 宏一, 原 崇裕, 谷一 靖江

    臨床免疫・アレルギー科  2011年 

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  • リンパ節細網線維芽細胞によるT細胞の動態制御

    原 崇裕, 片貝 智哉, 清水 章

    臨床免疫  2006年2月 

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MISC

  • 【IL-7 Biology】IL-7産生細胞の可視化と機能 多能性造血前駆細胞からリンパ球までの分化を方向づける骨髄IL-7ニッチの同定

    原 崇裕

    医学のあゆみ   261 ( 11 )   1060 - 1064   2017年6月

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    記述言語:日本語   出版者・発行元:医歯薬出版(株)  

    骨髄の造血幹細胞(HSC)は、間葉系前駆細胞や内皮細胞が形成するHSCニッチで自己複製する。また、HSCは多能性造血前駆細胞(MPP)、リンパ球性共通前駆細胞(CLP)に分化した後、さらにサイトカインIL-7依存的にB細胞に分化する。しかし、この造血系細胞分化が骨髄内のどこで、どのようにして起こっているのか明らかではなかった。著者らは、骨髄のIL-7産生性ストローマ細胞の分布を明らかにし、MPPとBLP(Ly6D+ CLP)初期B前駆細胞がIL-7産生性ストローマ細胞に近接して存在することを見出した。さらにIL-7産生性ストローマ細胞は、間葉系前駆細胞の約60%および少数の内皮細胞から構成されていることが判明した。また、間葉系前駆細胞からIL-7を欠損させたマウスでは、初期B前駆細胞が減少した。このことから、HSCニッチを構成するストローマ細胞のなかには、分化方向を決定するサイトカインを産生する亜集団が存在しており、これがMPP以降の分化を支持する特異的なニッチを形成していることが明らかとなった。(著者抄録)

  • 免疫学 IL-7産生細胞のリンパ組織内分布

    原 崇裕, 生田 宏一

    医学のあゆみ   246 ( 12 )   1055 - 1056   2013年9月

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    記述言語:日本語   出版者・発行元:医歯薬出版(株)  

  • 【胸腺におけるT細胞の分化とその機序】胸腺上皮細胞が産生するサイトカインとT細胞の分化

    生田 宏一, 原 崇裕, 谷一 靖江

    臨床免疫・アレルギー科   56 ( 3 )   219 - 224   2011年9月

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    記述言語:日本語   出版者・発行元:(有)科学評論社  

  • 【リンパ球の動態とケモカイン・接着分子】リンパ節細網線維芽細胞によるT細胞の動態制御

    原 崇裕, 片貝 智哉, 清水 章

    臨床免疫   45 ( 2 )   123 - 128   2006年2月

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    記述言語:日本語   出版者・発行元:(有)科学評論社  

講演・口頭発表等

  • Distribution and function of IL-7-producing stromal cells.

    Ikuta K, Hara T, Liang B, Tani-ichi S

    the 5th International Workshop of Kyoto T Cell Conference, Kyoto, June 3, 2009・  2009年 

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    開催年月日: 2009年

    記述言語:英語  

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  • リンパ節細網線維芽細胞が発現するケモカインCXCL16を介したリンパ球の動態制御

    原 崇裕, 片貝 智哉, 清水 章

    日本免疫学会総会・学術集会記録  2004年11月  (NPO)日本免疫学会

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    開催年月日: 2004年11月

    記述言語:日本語  

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  • リンパ節由来細網線維芽細胞の細網ネットワーク構築におけるリンフォトキシンシグナル経路の関与

    片貝 智哉, 原 崇裕, 清水 章

    日本免疫学会総会・学術集会記録  2004年11月  (NPO)日本免疫学会

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    開催年月日: 2004年11月

    記述言語:日本語  

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  • 二次リンパ組織において免疫反応の場を提供する細網線維芽細胞(FRC)

    片貝 智哉, 原 崇裕, 菅井 学, 清水 章

    日本免疫学会総会・学術集会記録  2001年12月  (NPO)日本免疫学会

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    開催年月日: 2001年12月

    記述言語:日本語  

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  • T細胞(3) T細胞機能 IL-7RのSTAT5とPI3Kの競合はin vivoにおけるT細胞および2型ILCの発達を調節する(T cell: T cell function Competition between STAT5 and PI3K of the IL-7R modulates T cell and type 2 ILC development in vivo)

    Cui Guangwei, Shimba Akihiro, Zhu Yuanbo, Tani-ichi Shizue, Hara Takahiro, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2017年12月  (NPO)日本免疫学会

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    記述言語:英語  

  • T細胞の発生 IL-7RのSTAT5とPI3KシグナルがT細胞の発生および恒常性に果たす役割は異なることが新規IL-7Rα変異マウスによって明らかになった(T cell development STAT5 and PI3K signals of the IL-7R play differential roles in T cell development and homeostasis revealed by novel IL-7Rα mutant mice)

    Cui Guangwei, Shimba Akihiro, Tani-ichi Shizue, Ogawa Makoto, Abe Shinya, Hara Takahiro, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2015年10月  (NPO)日本免疫学会

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    記述言語:英語  

  • T細胞の発生 IL-7およびIL-15受容体シグナルがリンパ球の分化・発生において果たす役割は異なることがIL-7Rα/IL-2Rβキメラノックインマウスによって明らかになった(T cell development Differential roles of IL-7 and IL-15 receptor signals in lymphocyte differentiation and development revealed by IL-7R α/IL-2Rβ chimera knock-in mice)

    Shimba Akihiro, Tani-ichi Shizue, Masuda Kyoko, Cui Guangwei, Ogawa Makoto, Abe Shinya, Hara Takahiro, Kawamoto Hiroshi, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2015年10月  (NPO)日本免疫学会

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    記述言語:英語  

  • T細胞分化 胸腺上皮細胞が産生するIL-7は胸腺細胞の発生および成熟を調節する(Interleukin-7 Produced by Thymic Epithelial Cells Controls Development and Maturation of Thymocytes)

    Shitara Soichiro, Hara Takahiro, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2012年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • T細胞発生 IL-7Rα/IL-2Rβキメラノックインマウスによって明らかになったリンパ球発生と維持におけるIL-7およびIL-2受容体シグナルの役割の違い(T cell development Differential roles of IL-7 and IL-2 receptor signals in lymphocyte development and maintenance revealed by IL-7Rα/IL-2Rβ chimera knock-in mice)

    Shimba Akihiro, Tani-ichi Shizue, Masuda Kyoko, Hara Takahiro, Kawamoto Hiroshi, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2014年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • アレルギー アナフィラキシー、気道炎症/喘息およびその他(皮膚炎を除く) 肺ILC2sの維持における局所IL-7の役割(Allergy-2: Anaphylaxis, airway inflammation/asthma and others (except dermtitis) Role of local IL-7 in maintenance of lung ILC2s)

    Takami Daichi, Abe Shinya, Shimba Akihiro, Asahi Takuma, Zhu Yuanbo, Ejima Aki, Tani-ichi Shizue, Hara Takahiro, Cui Guangwei, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2019年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • サイトカイン、ケモカインの新しい機能 IL-7産生ストローマ細胞のリンパ組織内分布(Distribution of IL-7-Expressing Cells in Lymphoid Organs)

    Hara Takahiro, Tani-ichi Shizue, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2009年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • サイトカインとケモカイン 様々な疾患の発症の調節 腸管におけるIL-7およびIL-15発現細胞の分布と機能(Cytokines and chemokines regulation of expression and signal transduction Distribution and function of IL-7- and IL-15-expressing cells in intestines)

    Hara Takahiro, Cui Guangwei, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2014年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • サイトカインのレポーターマウスによる腸内微小環境の同定(Identification of the gut microenvironment by the cytokine reporter mice)

    原 崇裕

    日本生化学会大会プログラム・講演要旨集  2021年11月  (公社)日本生化学会

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    記述言語:英語  

  • サイトカイン・ケモカイン 新しい生理機能 リンパ管内皮細胞が産生するIL-7は末梢T細胞の組織分布を制御する(IL-7 Produced by Lymphatic Endothelial Cells Controls Maintenance and Homing of Peripheral T Cells)

    原 崇裕, 生田 宏一

    日本免疫学会総会・学術集会記録  2011年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • サイトカイン・ケモカイン 新しい生理機能 肝細胞が産生するIL-7は肝臓でのリンパ球の分化と維持を制御する(IL-7 Produced by Hepatocytes Controls Development and Maintenance of Lymphocytes in the Liver)

    Liang Bingfei, 原 崇裕, 我妻 慶祐, 設楽 宗一郎, 谷一 靖江, 生田 宏一

    日本免疫学会総会・学術集会記録  2011年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • 免疫応答環境 IL-15-CFPノックインマウスを用いたIL-15発現細胞のin vivoでの可視化および解析(Visualization and Characterization of IL-15-Expressing Cells In Vivo by IL-15-CFP Knock-In Mice)

    Cui Guangwei, Hara Takahiro, Wagatsuma Keisuke, Abe Akifumi, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2012年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • 免疫系に対する微小環境 胸腺におけるIL-15ニッチの局所機能(Microenvironments for immune system Local function of the IL-15 niche in thymus)

    Cui Guangwei, Shimba Akihiro, Abe Shinya, Zhu Yuanbo, Mukohira Hisa, Tani-ichi Shizue, Hara Takahiro, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2016年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • 免疫系に対する微小環境 骨髄におけるNK細胞に対するIL-15ニッチの同定(Microenvironments for immune system Identification of IL-15 niche for NK cells in bone marrow)

    Abe Shinya, Hara Takahiro, Cui Guangwei, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2016年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • 寛容と免疫抑制 制御性T細胞におけるIL-7Rαの機能(Tolerance and Immune suppression Function of IL-7Rα in regulatory T cells)

    Tani-ichi Shizue, Mukohira Hisa, Hara Takahiro, Ikuta Koichi

    日本免疫学会総会・学術集会記録  2019年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • gamma/deltaT細胞とNK細胞 腸管上皮内γδT細胞は胸腺に由来する(Evidence for the thymic origin of γ δ IEL)

    設楽 宗一朗, 梁 冰霏, 原 崇裕, 我妻 慶祐, 生田 宏一

    日本免疫学会総会・学術集会記録  2011年11月  (NPO)日本免疫学会

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    記述言語:英語  

  • Visualization of the immune microenvironment by reporter mice

    Ikuta K, Cui G, Shitara S, Liang B, Tani-ichi S, Hara T

    The 6th International Workshop of Kyoto T Cell Conference,Kyoto  2013年6月 

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  • Visualizing the immune microenvironment by reporter mice

    Ikuta K, Cui G, Shitara S, Liang B, Tani-ichi S, Hara T

    The 20th East Asia Joint Symposium on Global Medical Science for the 22th Century, Tokyo  2013年11月 

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  • Differential roles of J promoters and E enhancers in controlling chromatin accessibility of the TCR locus by STAT5.

    Wagatsuma, K, Tani-ichi, S, Shimba, A, Liang, B, Shitara, S, Hara, T, Ikuta, K

    2013年6月 

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    記述言語:英語  

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  • Local function of the IL-15 niche in thymus

    Cui G, Shimba A, Abe S, Zhu Y, Mukohira H, Tani-ichi S, Hara T, Ikuta K

    第45回日本免疫学会学術集会、宜野湾  2016年12月 

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  • Role of glucocorticoids in T cell homeostasis and T cell response

    Shimba A, Cui G, Abe S, Zhu Y, Mukohira H, Tani-ichi S, Hara T, Ikuta K

    The 23rd East Asia Joint Symposium,Taipei  2016年10月 

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  • Identification and characterization of IL-7 niche in vivo

    Hara T, Ikuta K

    The 11th International Symposium of the Institute Network, Tokushima  2017年1月 

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  • Identification of IL-15 niche for NK cells in bone marrow

    阿部真也, 原 崇裕, 崔 広為, 生田宏一

    第45回日本免疫学会学術集会、宜野湾  2016年12月 

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    記述言語:英語  

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  • Identification of bone marrow IL-7 niche critical for B lymphopoiesis

    HARA Takahiro

    The 7th International Workshop of Kyoto T Cell Conference, Kyoto  2017年3月 

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    記述言語:英語  

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  • Identification and characterization of IL-7 niche in gut-associated lymphoid tissue

    Hara T

    第44 回日本免疫学会学術集会、札幌  2015年11月 

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  • 骨髄におけるリンパ球分化を制御するIL-7産生ストローマ細胞の同定

    原 崇裕

    第26回Kyoto T Cell Conference、大津  2016年5月 

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  • 腸管関連リンパ組織におけるIL-7 ニッチの同定と特徴

    阿部真也, 原崇裕, 生田宏一

    第38回日本分子生物学会年会、第88回日本生化学会大会 合同大会  2015年12月 

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  • Identification of IL-7 and IL-15 niche in lymphoid organs 招待 国際会議

    HARA Takahiro

    The 56th Annual Meeting and International Symposium of Korean Society of Life Science  2016年8月 

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    記述言語:英語   会議種別:口頭発表(招待・特別)  

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  • Competitive signaling between STAT5 and PI3K of the IL-7R modulates T cell development and homeostasis in vivo

    Cui G, Shimba A, Tani-ichi S, Hara T, Ikuta K

    International Congress of Immunology 2016,Melbourne  2016年8月 

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  • Visualization and characterization of IL-7- and IL-15-expressing cells in vivo

    Hara T, Cui G, Shitara S, Tani-ichi S, Ikuta K

    The 6th International Workshop of Kyoto T Cell Conference  2013年6月 

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    記述言語:英語  

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  • リンパ節細網線維芽細胞は免疫系細胞との接触により細網構造を構築し,「免疫プラットホーム」を提供する

    片貝 智哉, 原 崇裕, 清水 章

    第33回日本免疫学会総会、福岡  2003年11月  (NPO)日本免疫学会

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    記述言語:日本語  

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  • 胸線上皮細胞が産生するIL-7 の局所的役割

    生田宏一, 原 崇裕, 梁 冰霏, 谷一靖江

    第 39 回日本免疫学会学術集会、大阪、12 月2 日、2009.  2009年 

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    記述言語:日本語  

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  • IL-7 産生ストローマ細胞のリンパ組織内分布

    原 崇裕, 谷一靖江, 梁 冰霏, 生田宏一

    第39 回日本免疫学会学術集会、大阪、12 月3 日、2009.  2009年 

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    記述言語:日本語  

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  • Distribution of IL-7-expressing cells in lymphoid organs

    原 崇裕, 谷一靖江, 生田宏一

    第39回日本免疫学会学術集会,大阪  2009年12月 

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  • Competition between STAT5 and PI3K of the IL-7R modulates T cell and type 2 ILC development in vivo

    Cui G, Shimba A, Zhu Y, Tani-ichi S, Hara T, Ikuta K

    第46回日本免疫学会学術集会,仙台  2017年12月 

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  • Distribution and function of IL-7-producing stromal cells

    Ikuta K, Hara T, Liang B, Tani-ichi S

    The 5th International Workshop of Kyoto T Cell Conference,Kyoto  2009年6月 

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  • Distribution of IL-7-expressing cells in lymphoid organs

    Hara T, Tani-ichi S, Ikuta K

    The 14th International Congress of Immunology,Kobe  2010年8月 

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  • CXCL12-expressing bone marrow stromal cells express adiponectin and are targeted by Adipoq-Cre transgene

    Mukohira H, Hara T, Tani-ichi S, Ikuta K

    第47回日本免疫学会学術集会,福岡  2018年12月 

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  • IL-7産生細胞の体内分布と局所機能

    原 崇裕, 梁冰霏, 生田宏一

    第20回Kyoto T Cell Conference,京都  2010年6月 

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  • Hematopoietic cell-derived IL-15 supports the development and maintenance of NK, NKT and memory CD8 T cells in bone marrow

    Abe S, Hara T, Cui G, Asahi T, Ikuta K

    第47回日本免疫学会学術集会,福岡  2018年12月 

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  • The cytokine-producing immune microenvironment for innate lymphocytes

    Ikuta K, Cui G, Abe S, Asahi T, Hara T

    第48回日本免疫学会学術集会・シンポジウム,浜松  2019年12月 

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  • NK細胞の分化を支持するIL-15産生性骨髄微小環境の解明

    阿部真也, 原 崇裕, 生田宏一

    第29回Kyoto T Cell Conference,京都  2019年6月 

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  • Identification of the gut microenvironment by the cytokine reporter mice

    Hara Takahiro

    第94回 日本生化学会大会、Web開催  2021年11月 

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  • Visualization and characterization of IL-15-expressing cells in vivo by IL-15-CFP knock-in mice

    崔広為, 原 崇裕, 我妻慶祐, 生田宏一

    第41 回日本免疫学会学術集会、神戸、2012 年12 月5 日  2012年 

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    記述言語:英語  

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  • リンパ管内皮細胞が産生するIL-7 は末梢T 細胞の組織分布を制御する

    原 崇裕, 生田宏一

    第40回日本免疫学会学術集会、千葉  2011年11月 

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    記述言語:日本語  

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  • Distribution and function of IL-7-expressing cells in the intestinal tissues

    Hara T, Ikuta K

    The Third Workshop of Synthetic Immunology,Kyoto  2012年5月 

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  • Interleukin-7 produced by thymic epithelial cells controls development and maturation of thymocytes

    設楽宗一朗, 原 崇裕, 生田宏一

    第41 回日本免疫学会学術集会、神戸、2012 年12 月6 日  2012年 

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    記述言語:英語  

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  • Distribution and function of IL-7-expressing cells in the intestinal tissues

    Hara T, Ikuta K

    The 8th International Symposium of the Institute Network,Kyoto  2013年6月 

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  • IL-7 produced by thymic epithelial cells controls development and maturation of thymocytes

    Shitara S, Hara T, Ikuta K

    第41回日本免疫学会学術集会,神戸  2012年12月 

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  • Differential roles of Jγ promoters and Eγ enhancers in controlling chromatin accessibility of TCRγ locus by STAT5

    Wagatsuma K, Tani-ichi S, Shimba A, Liang B, Shitara S, Hara T, Ikuta K

    The 6th International Workshop of Kyoto T Cell Conference,Kyoto  2013年6月 

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  • Local function of IL-7 produced by thymic and epidermal epithelial cells

    Liang B, Hara T, Tani-ichi S, Ikuta K

    The 14th International Congress of Immunology,Kobe  2010年8月 

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  • 小腸上皮内γδT 細胞は胸腺に由来する

    設楽宗一朗, 梁 冰霏, 原 崇裕, 生田宏一

    第21 回Kyoto T Cell Conference 、京都、2011 年6 月11 日  2011年 

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    記述言語:日本語  

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  • 肝細胞が産生するIL-7 は肝臓でのリンパ球の分化と維持を制御する

    梁 冰霏, 原 崇裕, 我妻慶祐, 設楽宗一朗, 谷一靖江, 生田宏一

    第40 回日本免疫学会学術集会、千葉、 2011 年11 月28 日  2011年 

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    記述言語:日本語  

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  • Identification and characterization of the IL-15-expressing cells in vivo

    Cui G, Hara T, Simmons S, Wagatsuma K, Tani-ichi S, Ishii M, Ikuta K

    The 20th East Asia Joint Symposium on Global Medical Science for the 22th Century, Tokyo  2013年11月 

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  • Distribution and function of IL-7-expressing cells in large intestine

    Hara T, Ikuta K

    The 4th Workshop on Synthetic Immunology,Kyoto  2013年11月 

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  • Identification and characterization of IL-15-expressing cells in vivo

    Cui G, Hara T, Simmons S, Wagatsuma K, Abe A, Ishii M, Tani-ichi S, Ikuta K

    The 9th International Symposium of the Institute Network, Osaka  2014年6月 

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  • Distribution and function of IL-7-expressing cells in intestines

    Hara T, Cui G, Shitara, S, Ikuta K

    第42 回日本免疫学会学術集会,千葉  2013年12月 

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  • Characterization of the IL-15 niche in vivo

    Cui G, Hara T, Simmons S, Ishii M, Tani-ichi S, Ikuta K

    The 6th FIMSA Congress, Singapore  2015年7月 

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  • Distribution and function of IL-7- and IL-15-expressing cells in intestines

    Hara T, Cui G, Ikuta K

    第43 回日本免疫学会学術集会  2014年12月 

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    記述言語:英語  

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  • リンパ節細網線維芽細胞が発現するケモカインCXCL16を介したリンパ球の動態制御

    原 崇裕, 片貝智哉, 清水 章

    第34回日本免疫学会学術集会,札幌  2004年12月 

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  • Lympho-hematopoiesisとその微小環境ニッチェ 自然リンパ球のためのサイトカイン産生免疫微小環境(Lympho-hematopoiesis and its niche microenvironments The cytokine-producing immune microenvironment for innate lymphocytes)

    Ikuta Koichi, Cui Guangwei, Abe Shinya, Asahi Takuma, Hara Takahiro

    日本免疫学会総会・学術集会記録  2019年11月  (NPO)日本免疫学会

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    記述言語:英語  

▼全件表示

共同研究・競争的資金等の研究課題

  • 骨微小環境による自然免疫ダイナミクスの制御機構

    2023年4月 - 2026年3月

    日本学術振興会  科学研究費助成事業  基盤研究(C)

    原 崇裕

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    配分額:4810000円 ( 直接経費:3700000円 、 間接経費:1110000円 )

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  • 自然免疫系を構築する骨微小環境の新規同定

    2019年4月 - 2022年3月

    日本学術振興会  科学研究費助成事業 基盤研究(C)  基盤研究(C)

    原 崇裕

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    配分額:4420000円 ( 直接経費:3400000円 、 間接経費:1020000円 )

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  • 助成金

    2019年

    清水免疫学・神経科学振興財団 

    原 崇裕

      詳細を見る

    担当区分:研究代表者 

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  • 2型自然リンパ球の分化・機能獲得を制御する免疫微小環境の解明

    2016年4月 - 2019年3月

    日本学術振興会  科学研究費助成事業 基盤研究(C)  基盤研究(C)

    原 崇裕

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    担当区分:研究代表者  資金種別:競争的資金

    配分額:4810000円 ( 直接経費:3700000円 、 間接経費:1110000円 )

    2型自然リンパ球(Group 2 innate lymphoid cell:ILC2)は抗原受容体を持たない新規に同定されたリンパ球であり、喘息アレルギー疾患や寄生虫排除に重要な働きをしている。ILC2の分化にはサイトカインIL-7が必須であることが知られているが、ILC2の分化を支持するIL-7産生性の微小環境は未だ同定されていない。
    本研究では、骨髄ストローマ細胞特異的なIL-7欠損マウスと、IL-7-GFPノックインマウスの骨髄を解析し、ILC2の分化を支持する骨髄微小環境の性状を調べた。また、末梢組織である腸間膜や肝臓は、ILC2の分化に適していないことを示唆する結果も得られた。

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  • 助成金

    2015年

    清水免疫学・神経科学振興財団 

    原 崇裕

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    担当区分:研究代表者 

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  • IL-7産生ストローマ細胞が形成する骨髄微小環境の機能解明

    2014年4月 - 2016年3月

    日本学術振興会  科学研究費助成事業 若手研究(B)  若手研究(B)

    原 崇裕

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    担当区分:研究代表者  資金種別:競争的資金

    配分額:4030000円 ( 直接経費:3100000円 、 間接経費:930000円 )

    異物から生体を守る免疫システムにおいて、B細胞は必須の役割を果たしている。しかしながら、B細胞の形成を支持する骨髄IL-7産生性ストローマ細胞は同定されていない。本研究では、造血幹細胞ニッチの役割を果たすCAR細胞にはIL-7産生性の分画が含まれており、このCAR細胞分画が産生するIL-7がB前駆細胞の分化・増殖にとって必須であることを明らかにした。また、かつてB細胞の形成に寄与すると推測されていた骨芽細胞由来IL-7は、生体においては必要ではないことも明らかにした。

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  • 奨励費

    2014年

    藤原記念財団 

    原 崇裕

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    担当区分:研究代表者 

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  • IL-15産生細胞の生体内における分布と機能

    2013年4月 - 2016年3月

    日本学術振興会  科学研究費助成事業 基盤研究(C)  基盤研究(C)

    生田 宏一, 谷一 靖江, 原 崇裕

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    配分額:5200000円 ( 直接経費:4000000円 、 間接経費:1200000円 )

    免疫組織におけるIL-15産生細胞の分布と機能を明らかにするために、まずIL-15-CFPノックインマウスを作製し、骨髄、胸腺、脾臓、リンパ節、腸管などでIL-15産生細胞の生体内分布を明らかにした。次にIL-15-floxマウスを作製し、Tie2-Cre、FoxN1-Cre、Villin-Creマウスと交配することで、骨髄血管内皮細胞、胸腺上皮細胞、腸管上皮細胞が産生するIL-15の機能を明らかにした。

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  • 助成金

    2013年

    BioLegend/ Tomy Digital Biology Research Award 

    原 崇裕

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    担当区分:研究代表者 

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  • 内皮細胞由来IL-7によるB細胞分化、末梢T細胞維持の機構

    2012年4月 - 2014年3月

    日本学術振興会  科学研究費助成事業 若手研究(B)  若手研究(B)

    原 崇裕

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    担当区分:研究代表者  資金種別:競争的資金

    配分額:3120000円 ( 直接経費:2400000円 、 間接経費:720000円 )

    サイトカインIL-7は、リンパ球の分化・増殖・生存にとって重要な分子であるが、IL-7を産生する細胞の種類および、IL-7の局所的機能について詳細な解析はなされていない。本研究では末梢リンパ管内皮細胞や骨髄血管内皮細胞が産生するIL-7が末梢T細胞や骨髄B細胞に与える影響を明らかにすることを目的とした。内皮細胞特異的IL-7欠損マウスを解析した結果、内皮細胞に由来するIL-7は末梢T細胞の動態および、骨髄におけるB細胞の分化を制御していることが明らかになった。

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  • IL-7産生細胞の生体内における分布と機能

    2009年 - 2011年

    日本学術振興会  科学研究費助成事業 基盤研究(C)  基盤研究(C)

    生田 宏一, 谷一 靖江, 原 崇裕, 今井 久美子

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    配分額:4680000円 ( 直接経費:3600000円 、 間接経費:1080000円 )

    IL-7は胸腺や骨髄のストローマ細胞や上皮細胞が産生するサイトカインであり、リンパ球の増殖・生存・分化・成熟に不可欠である。しかしながら、リンパ組織におけるIL-7産生細胞の分布と機能については不明の点が多い。我々は、この問題を明らかにするために、まずIL-7-GFPノックインマウスを作製した。IL-7-GFPマウスでは骨髄ストローマ細胞、胸腺上皮細胞、腸管上皮細胞とともに、リンパ節やパイエル板のT細胞領域ストローマ細胞やリンパ管内皮細胞でGFPが発現していた。さらに、DSSにて大腸炎を誘導すると大腸上皮細胞におけるGFPの発現が上昇した。したがって、IL-7-GFPマウスは生理的ならび病的状態におけるIL-7産生細胞を明らかにするために有用であることがわかった。次に、我々はIL-7-floxedマウスを作製した。このマウスをFoxN1-Creトランスジェニック(Tg)マウスと交配し、胸腺上皮細胞でのみIL-7を欠損したコンディショナルノックアウト(cKO)マウスを得た。FoxN1-Cre IL-7flox/floxマウスでは胸腺の全細胞数とγδT細胞数が1/15に減少した。一方、腸管上皮細胞でのみIL-7を欠損したVillin-Cre(Vil-Cre) IL-7flox/floxマウスでは、小腸のαβIELにほとんど変化がなく、またγδIELも30%程度減少しているもののかなりの数が残っていた。これらの結果から、胸腺上皮細胞が産生するIL-7が胸腺細胞の増幅と生存に大きなはたらきをしていることが明らかとなった。さらに、小腸のγδ型上皮内リンパ球が著しく減少したことから、この細胞集団が胸腺に由来することが示唆された。次に、Albumin-Cre(Alb-Cre) Tgマウスと交配し、肝細胞でのみIL-7を欠損したcKOマウスを得た。このマウスでは成体肝臓のNKT細胞とT細胞が減少し、胎児肝臓におけるB細胞の分化が低下していた。この結果から、肝細胞が産生するIL-7が肝臓におけるNKT細胞の維持やB細胞の分化に一定のはたらきをしていることが明らかとなった。

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▼全件表示

その他

  • IL-7産生細胞の生体内における分布と機能

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    基盤研究(C) 研究分担者 2009年~2011年

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  • IL-15産生細胞の生体内における分布と機能

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    基盤研究(C) 研究分担者 2013年~2015年

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社会貢献活動

  • 研究室体験講座

    京都府立南陽高等学校 京都府 

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    訪問受け入れ

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メディア報道

  • サイトカインIL-15を産生する細胞の可視化に成功 -免疫系の微小環境の解明に期待-

    京都新聞、日刊工業新聞  2014年1月

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