Ph.D. Department of Biophysics and Biochemistry, Graduate School of Science, The University of Tokyo, January 2014
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Martin, B. N., Wang, C., Zhang, C. J., Kang, Z., Gulen, M. F., Zepp, J. A., Zhao, J., Bian, G., Do, J. S., Min, B., Pavicic, P. G., Jr., El-Sanadi, C., Fox, P. L., Akitsu, A., Iwakura, Y., Sarkar, A., Wewers, M. D., Kaiser, W. J., Mocarski, E. S., Rothenberg, M. E., Hise, A. G., Dubyak, G. R., Ransohoff, R. M. and Li, X. (2016). T cell-intrinsic ASC critically promotes TH17-mediated experimental autoimmune encephalomyelitis. Nat Immunol 17(5): 583-592.
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Akitsu, A., Ishigame, H., Kakuta, S., Chung, S. H., Ikeda, S., Shimizu, K., Kubo, S., Liu, Y., Umemura, M., Matsuzaki, G., Yoshikai, Y., Saijo, S. and Iwakura, Y. (2015). IL-1 receptor antagonist-deficient mice develop autoimmune arthritis due to intrinsic activation of IL-17-producing CCR2(+)Vgamma6(+)gammadelta T cells. Nat Commun 6: 7464.
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Akitsu, A., Kakuta, S., Saijo, S. and Iwakura, Y. (2014). Rag2-deficient IL-1 Receptor Antagonist-deficient Mice Are a Novel Colitis Model in Which Innate Lymphoid Cell-derived IL-17 Is Involved in the Pathogenesis. Exp Anim 63(2): 235-246.
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Ikeda, S., Saijo, S., Murayama, M. A., Shimizu, K., Akitsu, A. and Iwakura, Y. (2014). Excess IL-1 signaling enhances the development of Th17 cells by downregulating TGF-beta-induced Foxp3 expression. J Immunol 192(4): 1449-1458.
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Shimura, E., Shibui, A., Narushima, S., Nambu, A., Yamaguchi, S., Akitsu, A., Leonard, W. J., Iwakura, Y., Matsumoto, K., Suto, H., Okumura, K., Sudo, K. and Nakae, S. (2014). Potential role of myeloid cell/eosinophil-derived IL-17 in LPS-induced endotoxin shock. Biochem Biophys Res Commun 453(1): 1-6.
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Saijo, S., Ikeda, S., Yamabe, K., Kakuta, S., Ishigame, H., Akitsu, A., Fujikado, N., Kusaka, T., Kubo, S., Chung, S. H., Komatsu, R., Miura, N., Adachi, Y., Ohno, N., Shibuya, K., Yamamoto, N., Kawakami, K., Yamasaki, S., Saito, T., Akira, S. and Iwakura, Y. (2010). Dectin-2 recognition of alpha-mannans and induction of Th17 cell differentiation is essential for host defense against Candida albicans. Immunity 32(5): 681-691.
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Ishigame, H., Kakuta, S., Nagai, T., Kadoki, M., Nambu, A., Komiyama, Y., Fujikado, N., Tanahashi, Y., Akitsu, A., Kotaki, H., Sudo, K., Nakae, S., Sasakawa, C. and Iwakura, Y. (2009). Differential roles of interleukin-17A and -17F in host defense against mucoepithelial bacterial infection and allergic responses. Immunity 30(1): 108-119.