首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Glut4 Is Sorted from a Rab10 GTPase-independent Constitutive Recycling Pathway into a Highly Insulin-responsive Rab10 GTPase-dependent Sequestration Pathway after Adipocyte Differentiation
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Glut4 Is Sorted from a Rab10 GTPase-independent Constitutive Recycling Pathway into a Highly Insulin-responsive Rab10 GTPase-dependent Sequestration Pathway after Adipocyte Differentiation

机译:Glut4从Rab10 GTPase独立的组成性循环途径分类为高度胰岛素响应的Rab10 GTPase独立的螯合途径的脂肪细胞分化后。

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摘要

The RabGAP AS160/TBC1D4 controls exocytosis of the insulin-sensitive glucose transporter Glut4 in adipocytes. Glut4 is internalized and recycled through a highly regulated secretory pathway in these cells. Glut4 also cycles through a slow constitutive endosomal pathway distinct from the fast transferrin (Tf) receptor recycling pathway. This slow constitutive pathway is the only Glut4 cycling pathway in undifferentiated fibroblasts. The α2-macroglobulin receptor LRP1 cycles with Glut4 and the Tf receptor through all three exocytic pathways. To further characterize these pathways, the effects of knockdown of AS160 substrates on the trafficking kinetics of Glut4, LRP1, and the Tf receptor were measured in adipocytes and fibroblasts. Rab10 knockdown decreased cell surface Glut4 in insulin-stimulated adipocytes by 65%, but not in basal adipocytes or in fibroblasts. This decrease was due primarily to a 62% decrease in the rate constant of Glut4 exocytosis (kex), although Rab10 knockdown also caused a 1.4-fold increase in the rate constant of Glut4 endocytosis (ken). Rab10 knockdown in adipocytes also decreased cell surface LRP1 by 30% by decreasing kex 30–40%. There was no effect on LRP1 trafficking in fibroblasts or on Tf receptor trafficking in either cell type. These data confirm that Rab10 is an AS160 substrate that limits exocytosis through the highly insulin-responsive specialized secretory pathway in adipocytes. They further show that the slow constitutive endosomal (fibroblast) recycling pathway is Rab10-independent. Thus, Rab10 is a marker for the specialized pathway in adipocytes. Interestingly, mathematical modeling shows that Glut4 traffics predominantly through the specialized Rab10-dependent pathway both before and after insulin stimulation.
机译:RabGAP AS160 / TBC1D4控制脂肪细胞中胰岛素敏感性葡萄糖转运蛋白Glut4的胞吐作用。 Glut4通过这些细胞中高度受控的分泌途径被内化和再循环。 Glut4还通过与快速转铁蛋白(Tf)受体回收途径不同的慢本构内体途径循环。这种缓慢的组成性途径是未分化的成纤维细胞中唯一的Glut4循环途径。 α2-巨球蛋白受体LRP1通过所有三个胞外途径与Glut4和Tf受体循环。为了进一步表征这些途径,在脂肪细胞和成纤维细胞中测量了敲低AS160底物对Glut4,LRP1和Tf受体运输动力学的影响。 Rab10基因敲低使胰岛素刺激的脂肪细胞中的细胞表面Glut4降低了65%,但基础脂肪细胞或成纤维细胞中却没有。这种降低主要是由于Glut4胞吐作用(kex)的速率常数降低了62%,尽管Rab10敲低也导致Glut4胞吞作用(ken)的速率常数增加了1.4倍。脂肪细胞中的Rab10敲低也使细胞表面LRP1降低了30%,而kex降低了30-40%。对两种细胞类型的成纤维细胞中LRP1转运或Tf受体转运均无影响。这些数据证实,Rab10是AS160底物,可通过脂肪细胞中高度胰岛素反应的专门分泌途径来限制胞吐作用。他们进一步表明,缓慢的本构内体(成纤维细胞)回收途径是Rab10依赖性的。因此,Rab10是脂肪细胞中专门途径的标志物。有趣的是,数学建模表明,在胰岛素刺激之前和之后,Glut4主要通过专门的Rab10依赖性途径进行运输。

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