Masataka Asagiri, Kojiro Sato, Takako Usami, Sae Ochi,Hiroshi Nishina, Hiroki Yoshida, Ikuo Morita, Erwin F. Wagner, Tak W. Mak, Edgar Serfling, and Hiroshi Takayanagi (2005) Autoamplification of NFATc1 determines its essential role in bone homeostasis J. Exp. Med. in press
Tsuyoshi Ishikawa, Shuji Terai, Yohei Urata, Yoshio Marumoto, Koji Aoyama, Isao Sakaida, Tomoaki Murata, Hiroshi Nishina, Koh Shinoda, Shunji Uchimura, Yoshihiko Hamamoto, and Kiwamu Okita (2005) Fibroblast growth factor 2 facilitates the differentiation of transplanted bone marrow cells into hepatocytes. Cell Tissue Res. in press
Saito K, Araki Y, Kontani K, Nishina H, Katada T. (2005) Novel role of the small GTPase Rheb: Its implication in endocytic pathway independent of the activation of mammalian target of rapamycin. J. Biochem. 137, 423-430.
Taro Takami, Shuji Terai, Yuichiro Yokoyama, Haruko Tanimoto, Kunihiko Tajima, Koichi Uchida, Takahiro Yamasaki, Isao Sakaida, Hiroshi Nishina, Snorri S. Thorgeirsson and Kiwamu Okita (2005) Human homologue of Maid (HHM) is a useful marker protein in hepatocarcinogenesis. Gastroenterology 128, 1369-1380.
Shuji Terai, Isao Sakaida, Hiroshi Nishina, and Kiwamu Okita (2005) Lesson from the GFP/CCl4 model?Translational Research Project: the development of cell therapy using autologous bone marrow cells in patients with liver cirrhosis. J. Hepat. Panc. Surg. 12, 203-207.
Imai Y, Kuba K, Rao S, Huan Y, Guo F, Guan B, Yang P, Sarao R, Howard Leong-Poi H, Fukamizu A, Hui CC, Hein L, Wada T, Uhlig S, Slutsky AS, Jiang C, and Penninger JM; The SARS-coronavirus receptor ACE2 protects from severe acute lung failure, Nature 2005 436, 112-116.
Kuba K, Imai Y, Rao S, Gao H, Guo F, Guan B, Huan Y, Yang P, Zhang Y, Bao L, Zhang B, Huang L, Liu G, Wang Z, Liu Y, Zheng D, Slutsky AS, Wada T, Liu D, Qin C, JiangC and Penninger JM; A critical role of angiotensin converting enzyme 2 (ACE2) in SARS pathogenesis Nat Med. 2005 11 875-879
Wada T, Nakashima T, Oliveira-dos-Santos AJ, Gasser J, Hara H, Schett G, Penninger JM (2005) The molecular scaffold Gab2 is a crucial component of RANK signaling and osteoclastogenesis. Nat. Med. 11, 394-399.
Sasaki J, Sasaki T, Yamazaki M, Matsuoka K, Taya C, Shitara H, Takasuga S, Nishio M, Mizuno K, Wada T, Miyazaki H, Watanabe H, Iizuka R, Kubo S, Murata S, Chiba T, Maehama T, Hamada K, Kishimoto H, Frohman MA, Tanaka K, Penninger JM, Yonekawa H, Suzuki A, Kanaho Y. Regulation of anaphylactic responses by phosphatidylinositol phosphate kinase type I {alpha}. J Exp Med. 2005 Mar 21 ;201(6): 859-70. Epub 2005 Mar 14.
Wilson, LD, Ross SA, Wada T, Penninger JM, and Thomas PQ. Developmentally Regulated Expression of the Regulator of G-Protein Signaling Gene 2 (Rgs2) in the Embryonic Mouse Pituitary Gene Expr Patterns. 2005 Feb;5(3):305-11.
Wada T, Nakashima T, Nishina H, Penninger JM (2005) RANK-RANKL signaling in osteoclastogenesis. Trends Mol Med. in press
Saito, K., Kajiho, H., Araki, Y., Kurosu, H., Kontani, K., Nishina, H., and Katada, T. (2005) Purification and analysis of RIN family-novel Rab5 GEFs. Methods Enzymol. 403: in press
Hiroshi Nishina* and Toshiaki Katada (2005) [book] The biological functions of JNKKs (MKK4/MKK7 knockout mice) in JNK Signaling Pathway (Anning Lin, eds), pp. 41-49. Landes Bioscience Texas *Corresponding author
和田悌司、中島友樹、仁科博史、Josef M Penninger:アダプ ター分子Gab2は骨密度を制御する;細胞工学、 24:704-705 (2005))
仁科博史、堅田利明:MAPキナーゼ;生物薬科学実験講座(石橋貞彦、市川厚、堅田利明 編)、pp. 424-433 廣川書店 (2005)
仁科博史:細胞を利用した治療;医薬品の開発と生産、108-112 東京化学同人(2005)
浦誠司、仁科博史:MAPキナーゼとストレス応答;シグナル伝達集中マスター、58-67, 119-121 羊土社 (2005)
2005年以前のPublication Listはこちらです