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微管网络通过激活Akt/蛋白激酶B对胰岛素信号传导是必需的:胰岛素刺激囊泡对接/融合而非细胞内移动性的证据。

Microtubule network is required for insulin signaling through activation of Akt/protein kinase B: evidence that insulin stimulates vesicle docking/fusion but not intracellular mobility.

作者信息

Eyster Craig A, Duggins Quwanza S, Gorbsky Gary J, Olson Ann Louise

机构信息

Department of Biochemistry and Molecular Biology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104, USA.

出版信息

J Biol Chem. 2006 Dec 22;281(51):39719-27. doi: 10.1074/jbc.M607101200. Epub 2006 Oct 26.

DOI:10.1074/jbc.M607101200
PMID:17068336
Abstract

The microtubule network has been shown to be required for insulin-dependent GLUT4 redistribution; however, the precise molecular function has not been elucidated. In this article, we used fluorescence recovery after photobleaching (FRAP) to evaluate the role of microtubules in intracellular GLUT4 vesicle mobility. A comparison of the rate of fluorescence recovery (t((1/2))), and the maximum fluorescence recovered (F(max)) was made between basal and insulin-treated cells with or without nocodazole treatment to disrupt microtubules. We found that intracellular mobility of fluorescently tagged GLUT4 (HA-GLUT4-GFP) was high in basal cells. Mobility was not increased by insulin treatment. Basal mobility was dependent upon an intact microtubule network. Using a constitutively active Akt to signal GLUT4 redistribution, we found that microtubule-based GLUT4 vesicle mobility was not obligatory for GLUT4 plasma membrane insertion. Our findings suggest that microtubules organize the insulin-signaling complex and provide a surface for basal mobility of GLUT4 vesicles. Our data do not support an obligatory requirement for long range microtubule-based movement of GLUT4 vesicles for insulin-mediated GLUT4 redistribution to the cell surface. Taken together, these findings suggest a model in which insulin signaling targets membrane docking and/or fusion rather than GLUT4 trafficking to the cell surface.

摘要

微管网络已被证明是胰岛素依赖性GLUT4重新分布所必需的;然而,其精确的分子功能尚未阐明。在本文中,我们使用光漂白后荧光恢复(FRAP)来评估微管在细胞内GLUT4囊泡移动性中的作用。在有或没有诺考达唑处理以破坏微管的基础细胞和胰岛素处理细胞之间,比较了荧光恢复率(t((1/2)))和最大荧光恢复量(F(max))。我们发现,在基础细胞中,荧光标记的GLUT4(HA-GLUT4-GFP)的细胞内移动性很高。胰岛素处理并未增加其移动性。基础移动性依赖于完整的微管网络。使用组成型活性Akt来信号传导GLUT4重新分布,我们发现基于微管的GLUT4囊泡移动性对于GLUT4质膜插入并非必需。我们的研究结果表明,微管组织胰岛素信号复合物,并为GLUT4囊泡的基础移动性提供一个表面。我们的数据不支持胰岛素介导的GLUT4重新分布到细胞表面需要基于微管的GLUT4囊泡进行长距离移动这一强制性要求。综上所述,这些发现提示了一个模型,其中胰岛素信号靶向膜对接和/或融合,而非GLUT4向细胞表面的转运。

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