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热休克蛋白90抑制剂格尔德霉素对mTOR- Raptor信号通路的抑制作用

Suppression of the mTOR-raptor signaling pathway by the inhibitor of heat shock protein 90 geldanamycin.

作者信息

Ohji Goh, Hidayat Sujuti, Nakashima Akio, Tokunaga Chiharu, Oshiro Noriko, Yoshino Ken-Ichi, Yokono Koichi, Kikkawa Ushio, Yonezawa Kazuyoshi

机构信息

Biosignal Research Center, Kobe University, Kobe 657-8501.

出版信息

J Biochem. 2006 Jan;139(1):129-35. doi: 10.1093/jb/mvj008.

Abstract

Heat shock protein 90 (Hsp90) was co-immunoprecipitated with raptor, the binding partner of the mammalian target of rapamycin (mTOR) from HEK293 cells. Hsp90 was detected in the anti-raptor antibody immunoprecipitates prepared from the cell extract by immunoblot analysis using the anti-Hsp90 antibody, and the association of these two proteins was confirmed by immunoprecipitation from the cells co-expressing Hsp90 and raptor as epitope-tagged molecules. Geldanamycin, a potent inhibitor of Hsp90, disrupted the in vivo binding of Hsp90 to raptor without affecting the association of raptor and mTOR, and suppressed the phosphorylation by mTOR of the downstream translational regulators p70 S6 kinase (S6K) and eukaryotic initiation factor 4E-binding protein 1 (4E-BP1). The protein kinase activity of S6K as well as the phosphorylation of the substrate, 40S ribosomal protein S6, were lowered in the geldanamycin-treated cells. These results indicate that Hsp90 is involved in the regulation of protein translation by facilitating the phosphorylation reaction of 4E-BP1 and S6K catalyzed by the mTOR/raptor complex through the association with raptor, and that the mTOR signaling pathway is a novel target of geldanamycin.

摘要

热休克蛋白90(Hsp90)与雷帕霉素哺乳动物靶点(mTOR)的结合伴侣 Raptor 一起从人胚肾293细胞(HEK293细胞)中共免疫沉淀出来。通过使用抗Hsp90抗体的免疫印迹分析,在从细胞提取物制备的抗Raptor抗体免疫沉淀物中检测到Hsp90,并且通过从共表达作为表位标记分子的Hsp90和Raptor的细胞中进行免疫沉淀,证实了这两种蛋白质的关联。格尔德霉素是一种有效的Hsp90抑制剂,它破坏了Hsp90与Raptor在体内的结合,而不影响Raptor与mTOR的关联,并抑制了mTOR对下游翻译调节因子p70 S6激酶(S6K)和真核起始因子4E结合蛋白1(4E-BP1)的磷酸化作用。在格尔德霉素处理的细胞中,S6K的蛋白激酶活性以及底物40S核糖体蛋白S6的磷酸化水平均降低。这些结果表明,Hsp90通过与Raptor结合,促进mTOR/Raptor复合物催化的4E-BP1和S6K的磷酸化反应,从而参与蛋白质翻译的调节,并且mTOR信号通路是格尔德霉素的一个新靶点。

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