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一个新的结构域介导胰岛素诱导的胰岛素受体底物1(IRS-1)的蛋白酶体降解。

A novel domain mediates insulin-induced proteasomal degradation of insulin receptor substrate 1 (IRS-1).

作者信息

Boura-Halfon Sigalit, Shuster-Meiseles Timor, Beck Avital, Petrovich Katia, Gurevitch Diana, Ronen Denise, Zick Yehiel

机构信息

Department of Molecular Cell Biology, The Weizmann Institute of Science, Rehovot, 76100, Israel.

出版信息

Mol Endocrinol. 2010 Nov;24(11):2179-92. doi: 10.1210/me.2010-0072. Epub 2010 Sep 15.

Abstract

Insulin receptor substrate-1 (IRS-1) plays a pivotal role in insulin signaling, therefore its degradation is exquisitely regulated. Here, we show that insulin-stimulated degradation of IRS-1 requires the presence of a highly conserved Ser/Thr-rich domain that we named domain involved in degradation of IRS-1 (DIDI). DIDI (amino acids 386-430 of IRS-1) was identified by comparing the intracellular degradation rate of several truncated forms of IRS-1 transfected into CHO cells. The isolated DIDI domain underwent insulin-stimulated Ser/Thr phosphorylation, suggesting that it serves as a target for IRS-1 kinases. The effects of deletion of DIDI were studied in Fao rat hepatoma and in CHO cells expressing Myc-IRS-1(WT) or Myc-IRS-1(Δ386-430). Deletion of DIDI maintained the ability of IRS-1(Δ386-434) to undergo ubiquitination while rendering it insensitive to insulin-induced proteasomal degradation, which affected IRS-1(WT) (80% at 8 h). Consequently, IRS-1(Δ386-434) mediated insulin signaling (activation of Akt and glycogen synthesis) better than IRS-1(WT). IRS-1(Δ386-434) exhibited a significant greater preference for nuclear localization, compared with IRS-1(WT). Higher nuclear localization was also observed when cells expressing IRS-1(WT) were incubated with the proteasome inhibitor MG-132. The sequence of DIDI is conserved more than 93% across species, from fish to mammals, as opposed to approximately 40% homology of the entire IRS-1. These findings implicate DIDI as a novel, highly conserved domain of IRS-1, which mediates its cellular localization, rate of degradation, and biological activity, with a direct impact on insulin signal transduction.

摘要

胰岛素受体底物-1(IRS-1)在胰岛素信号传导中起关键作用,因此其降解受到精确调控。在此,我们表明胰岛素刺激的IRS-1降解需要一个高度保守的富含丝氨酸/苏氨酸的结构域的存在,我们将其命名为参与IRS-1降解的结构域(DIDI)。通过比较转染到CHO细胞中的几种截短形式的IRS-1的细胞内降解速率,鉴定出了DIDI(IRS-1的第386 - 430位氨基酸)。分离出的DIDI结构域经历了胰岛素刺激的丝氨酸/苏氨酸磷酸化,表明它是IRS-1激酶的作用靶点。在Fao大鼠肝癌细胞以及表达Myc-IRS-1(野生型)或Myc-IRS-1(Δ386 - 430)的CHO细胞中研究了缺失DIDI的影响。缺失DIDI使IRS-1(Δ386 - 434)保持了泛素化能力,同时使其对胰岛素诱导的蛋白酶体降解不敏感,而这影响了野生型IRS-1(8小时时为80%)。因此,IRS-1(Δ386 - 434)介导胰岛素信号传导(Akt激活和糖原合成)的能力优于野生型IRS-1。与野生型IRS-1相比,IRS-1(Δ386 - 434)对核定位表现出明显更高的偏好。当用蛋白酶体抑制剂MG-132处理表达野生型IRS-1的细胞时,也观察到了更高的核定位。从鱼类到哺乳动物,DIDI的序列在物种间的保守性超过93%,而整个IRS-1的同源性约为40%。这些发现表明DIDI是IRS-1的一个新的、高度保守的结构域,它介导其细胞定位、降解速率和生物学活性,对胰岛素信号转导有直接影响。

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