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Dive into the research topics where Toshimasa Yamauchi is active.

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Featured researches published by Toshimasa Yamauchi.


Journal of Biological Chemistry | 1997

Role of insulin receptor substrate-1 and pp60 in the regulation of insulin-induced glucose transport and GLUT4 translocation in primary adipocytes.

Yasushi Kaburagi; Shinobu Satoh; Hiroyuki Tamemoto; Ritsuko Yamamoto-Honda; Kazuyuki Tobe; Kohjiro Veki; Toshimasa Yamauchi; Eri Kono-Sugita; Hisahiko Sekihara; Shinichi Aizawa; Samuel W. Cushman; Yasuo Akanuma; Yoshio Yazaki; Takashi Kadowaki

In muscle and fat, glucose transport occurs through the translocation of GLUT4 from an intracellular pool to the cell surface. Phosphatidylinositol (PI) 3-kinase has been shown to be required in this process. Insulin is thought to activate this enzyme by stimulating its association with tyrosine-phosphorylated proteins such as insulin receptor substrate (IRS)-1, IRS-2, Grb2-associated binder-1, and pp60. To study the role of these endogenous substrates in glucose transport, we analyzed adipocytes from IRS-1 null mice that we previously generated (Tamemoto, H., Kadowaki, T., Tobe, K., Yagi, T., Sakura, H., Hayakawa, T., Terauchi, Y., Ueki, K., Kaburagi, Y., Satoh, S., Sekihara, H., Yoshioka, S., Horikoshi, H., Furuta, Y., Ikawa, Y., Kasuga, M., Yazaki Y., and Aizawa S. (1994) Nature 372, 182–186). In adipocytes from these mice, we showed that: 1) insulin-induced PI 3-kinase activity in the antiphosphotyrosine immunoprecipitates was 54% of wild-type; 2) pp60 was the major tyrosine-phosphorylated protein that associated with PI 3-kinase, whereas tyrosine phosphorylaion of IRS-2 as well as its association with this enzyme was almost undetectable; and 3) glucose transport and GLUT4 translocation at maximal insulin stimulation were decreased to 52 and 68% of those from wild-type. These data suggest that both IRS-1 and pp60 play a major role in insulin-induced glucose transport in adipocytes, and that pp60 is predominantly involved in regulating this process in the absence of IRS-1.


Journal of Biological Chemistry | 1998

Growth hormone and prolactin stimulate tyrosine phosphorylation of insulin receptor substrate-1, -2, and -3, their association with p85 phosphatidylinositol 3-kinase (PI3-kinase), and concomitantly PI3-kinase activation via JAK2 kinase.

Toshimasa Yamauchi; Yasushi Kaburagi; Kohjiro Ueki; Yuki Tsuji; George R. Stark; Ian M. Kerr; Toshio Tsushima; Yasuo Akanuma; Issei Komuro; Kazuyuki Tobe; Yoshio Yazaki; Takashi Kadowaki


Archive | 2004

Method of selectively assaying adiponectin multimers

Hiroyuki Ebinuma; Hirokazu Yago; Yuka Akimoto; Osamu Miyazaki; Takashi Kadowaki; Toshimasa Yamauchi; Kazuo Hara


Archive | 2009

Adiponectin receptor and gene encoding the same

Takashi Kadowaki; Toshimasa Yamauchi; Ryozo Nagai; Junji Kamon


Archive | 2004

Method of separating and assaying adiponectin multimer

Hiroyuki Ebinuma; Hirokazu Yago; Yuka Akimoto; Osamu Miyazaki; Takashi Kadowaki; Toshimasa Yamauchi; Kazuo Hara


Archive | 2004

Method of pretreating sample and immunological assay method using the same

Hiroyuki Ebinuma; Hirokazu Yago; Yuka Akimoto; Osamu Miyazaki; Takashi Kadowaki; Toshimasa Yamauchi


Archive | 2003

Preventive/remedy for arteriosclerosis

Takashi Kadowaki; Toshimasa Yamauchi; Naoto Kubota; Yasuo Terauchi; Tetsuya Kubota; Tetsuo Noda; Ryozo Nagai; Yasushi Imai


Archive | 2003

New use of adiponectin

Hideyuki Gomi; Takashi Kadowaki; Makoto Takada; Toshimasa Yamauchi; 英行 五味; 敏正 山内; 孝 門脇; 高田 誠


Archive | 2005

Adiponectin expression-inducing agents and uses thereof

Takashi Kadowaki; Toshimasa Yamauchi; Shoko Kitajima; Yusuke Ito


Archive | 2008

OSMOTIN RECOMBINANT PROTEIN, METHOD FOR PRODUCTION OF THE SAME, AND USE OF THE SAME

Kanako Kobayashi; Hiroaki Nishiguchi; Takashi Kadowaki; Toshimasa Yamauchi

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Kazuo Hara

Jichi Medical University

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Tetsuo Noda

Japanese Foundation for Cancer Research

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Yasushi Imai

Jichi Medical University

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