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Rin1调节胰岛素受体信号转导通路。

Rin1 regulates insulin receptor signal transduction pathways.

作者信息

Hunker C M, Giambini H, Galvis A, Hall J, Kruk I, Veisaga M L, Barbieri M A

机构信息

Department of Biological Sciences, Florida International University, College of Arts and Sciences, 11200 S.W. 8th Street, Bldg. OE, Room 167, Miami, FL 33199, USA.

出版信息

Exp Cell Res. 2006 Apr 15;312(7):1106-18. doi: 10.1016/j.yexcr.2005.12.021. Epub 2006 Feb 2.

Abstract

Rin1 is a multifunctional protein containing several domains, including Ras binding and Rab5 GEF domains. The role of Rin1 in insulin receptor internalization and signaling was examined by expressing Rin1 and deletion mutants in cells utilizing a retrovirus system. Here, we show that insulin-receptor-mediated endocystosis and fluid phase insulin-stimulated endocytosis are enhanced in cells expressing the Rin1:wild type and the Rin1:C deletion mutant, which contain both the Rab5-GEF and GTP-bound Ras binding domains. However, the Rin1:N deletion mutant, which contains both the SH2 and proline-rich domains, blocked insulin-stimulated receptor-mediated and insulin-stimulated fluid phase endocytosis. In addition, the expression of Rin1:delta (429-490), a natural occurring splice variant, also blocked both receptor-mediated and fluid phase endocystosis. Furthermore, association of the Rin1 SH2 domain with the insulin receptor was dependent on tyrosine phosphorylation of the insulin receptor. Morphological analysis indicates that Rin1 co-localizes with insulin receptor both at the cell surface and in endosomes upon insulin stimulation. Interestingly, the expression of Rin1:wild type and both deletion mutants blocks the activation of Erk1/2 and Akt1 kinase activities without affecting either JN or p38 kinase activities. DNA synthesis and Elk-1 activation are also altered by the expression of Rin1:wild type and the Rin1:C deletion mutant. In contrast, the expression of Rin1:delta stimulates both Erk1/2 and Akt1 activation, DNA synthesis and Elk-1 activation. These results demonstrate that Rin1 plays an important role in both insulin receptor membrane trafficking and signaling.

摘要

Rin1是一种多功能蛋白,包含多个结构域,包括Ras结合结构域和Rab5鸟苷酸交换因子(GEF)结构域。利用逆转录病毒系统在细胞中表达Rin1及其缺失突变体,研究了Rin1在胰岛素受体内化和信号传导中的作用。在此,我们表明,在表达Rin1野生型和Rin1:C缺失突变体的细胞中,胰岛素受体介导的内吞作用和液相胰岛素刺激的内吞作用增强,这两种突变体都含有Rab5-GEF和GTP结合的Ras结合结构域。然而,含有SH2结构域和富含脯氨酸结构域的Rin1:N缺失突变体阻断了胰岛素刺激的受体介导的内吞作用和胰岛素刺激的液相内吞作用。此外,天然存在的剪接变体Rin1:δ(429-490)的表达也阻断了受体介导的内吞作用和液相内吞作用。此外,Rin1的SH2结构域与胰岛素受体的结合依赖于胰岛素受体的酪氨酸磷酸化。形态学分析表明,胰岛素刺激后,Rin1在细胞表面和内体中均与胰岛素受体共定位。有趣的是,Rin1野生型和两种缺失突变体的表达均阻断了Erk1/2和Akt1激酶活性的激活,而不影响JN或p38激酶活性。Rin1野生型和Rin1:C缺失突变体的表达也改变了DNA合成和Elk-1的激活。相反,Rin1:δ的表达刺激了Erk1/2和Akt1激活、DNA合成和Elk-1激活。这些结果表明,Rin1在胰岛素受体膜运输和信号传导中均起重要作用。

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