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首页> 外文期刊>Endocrinology >Sorting Nexin 5 and Dopamine D-1 Receptor Regulate the Expression of the Insulin Receptor in Human Renal Proximal Tubule Cells
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Sorting Nexin 5 and Dopamine D-1 Receptor Regulate the Expression of the Insulin Receptor in Human Renal Proximal Tubule Cells

机译:排序Nexin 5和多巴胺D-1受体调节人肾近端小管细胞中胰岛素受体的表达

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Sorting nexin 5 (SNX5) belongs to the SNX family, which is composed of a diverse group of proteins that mediate trafficking of plasma membrane proteins, receptors, and transporters. SNX5 is important in the resensitization of the dopamine D-1-like receptor (D1R). D1R is uncoupled from its effector proteins in hypertension and diabetes, and treatment of diabetes restores D1R function and insulin receptor (IR) expression. We tested the hypothesis that the D1R and SNX5 regulate IR by studying the expression, distribution, dynamics, and functional consequences of their interaction in human renal proximal tubule cells (hRPTCs). D1R, SNX5, and IR were expressed and colocalized in the brush border of RPTs. Insulin promoted the colocalization of SNX5 and IR at the perinuclear area of hRPTCs. Unlike SNX5, the D1R colocalized and coimmunoprecipitated with IR, and this interaction was enhanced by insulin. To evaluate the role of SNX5 and D1R on IR signaling, we silenced via RNA interference the endogenous expression of SNX5 or the D1R gene DRD1 in hRPTCs. We observed a decrease in IR expression and abundance of phosphorylated IR substrate and phosphorylated protein kinase B, which are crucial components of the IR signal transduction pathway. Our data indicate that SNX5 and D1R are necessary for normal IR expression and activity. It is conceivable that D1R and SNX5 may interact to increase the sensitivity to insulin via a positive regulation of IR and insulin signaling.
机译:分类神经毒素5(SNX5)属于SNX家族,由一系列介导质膜蛋白,受体和转运蛋白运输的蛋白质组成。 SNX5在多巴胺D-1样受体(D1R)的重新敏化中很重要。在高血压和糖尿病中,D1R与效应蛋白脱钩,糖尿病的治疗可恢复D1R的功能和胰岛素受体(IR)的表达。我们通过研究D1R和SNX5在人肾近端肾小管细胞(hRPTCs)中相互作用的表达,分布,动力学和功能后果,检验了D1R和SNX5调节IR的假设。 D1R,SNX5和IR在RPT的笔刷边界中表达并共定位。胰岛素促进了hRPTCs核周区域SNX5和IR的共定位。与SNX5不同,D1R与IR共定位并共免疫沉淀,并且这种相互作用被胰岛素增强。为了评估SNX5和D1R在IR信号传导中的作用,我们通过RNA干扰沉默了hRPTCs中SNX5或D1R基因DRD1的内源表达。我们观察到IR表达的下降以及磷酸化IR底物和磷酸化蛋白激酶B的丰度,这是IR信号转导途径的关键组成部分。我们的数据表明SNX5和D1R是正常IR表达和活性所必需的。可以想象,D1R和SNX5可以通过IR和胰岛素信号的正向调节相互作用,从而提高对胰岛素的敏感性。

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