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Cool-1/βPIX functions as a guanine nucleotide exchange factor in the cycling of Cdc42 to regulate insulin secretion

机译:Cool-1 /βPIX在Cdc42循环中充当鸟嘌呤核苷酸交换因子以调节胰岛素分泌

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摘要

Second-phase insulin release requires the sustained mobilization of insulin granules from internal storage pools to the cell surface for fusion with the plasma membrane. However, the detailed mechanisms underlying this process remain largely unknown. GTP-loading of the small GTPase Cdc42 is the first glucose-specific activation step in the process, although how glucose triggers Cdc42 activation is entirely unknown. In a directed candidate screen for guanine nucleotide exchange factors (GEFs), which directly activate small GTPases, Cool-1/βPix was identified in pancreatic islet beta cells. In support of its role as the beta cell Cdc42 GEF, βPix coimmunoprecipitated with Cdc42 in human islets and MIN6 beta cells in a glucose-dependent manner, peaking just prior to Cdc42 activation. Furthermore, RNAi-mediated βPix reduction by 50% corresponded to full ablation of glucose-induced Cdc42 activation and significant attenuation of basal and glucose-stimulated insulin secretion. Of the two Cdc42 guanine nucleotide dissociation inhibitor (GDI) proteins identified in beta cells, βPix competed selectively with caveolin-1 (Cav-1) but not RhoGDI in coimmunoprecipitation and GST-Cdc42-GDP interaction assays. However, a phospho-deficient Cav-1-Y14F mutant failed to compete with βPix; Cav-1Tyr14 is an established phosphorylation site for Src kinase. Taken together, these data support a new model, wherein glucose stimulates Cav-1 and induces its dissociation from Cdc42, possibly via Src kinase activation to phosphorylate Cav-1Tyr14, to promote Cdc42-βPix binding and Cdc42 activation, and to trigger downstream signaling and ultimately sustain insulin release.
机译:第二阶段胰岛素释放需要将胰岛素颗粒从内部存储池持续移动到细胞表面,以便与质膜融合。但是,此过程背后的详细机制仍然未知。小型GTPase Cdc42的GTP加载是该过程中的第一个葡萄糖特异性激活步骤,尽管葡萄糖如何触发Cdc42激活是完全未知的。在直接激活小GTP酶的鸟嘌呤核苷酸交换因子(GEF)的定向候选筛选中,在胰岛β细胞中鉴定出Cool-1 /βPix。为了支持其作为β细胞Cdc42 GEF的作用,βPix与Cdc42在人胰岛和MIN6β细胞中以葡萄糖依赖的方式共同免疫沉淀,在Cdc42激活之前达到峰值。此外,RNAi介导的βPix减少50%对应于葡萄糖诱导的Cdc42活化的完全消融,以及基础和葡萄糖刺激的胰岛素分泌的显着减弱。在beta细胞中鉴定出的两种Cdc42鸟嘌呤核苷酸解离抑制剂(GDI)蛋白中,βPix在共免疫沉淀和GST-Cdc42-GDP相互作用测定中与小窝蛋白1(Cav-1)选择性竞争,但与RhoGDI竞争。然而,磷酸缺乏的Cav-1-Y14F突变体无法与βPix竞争。 Cav-1 Tyr14 是Src激酶已确定的磷酸化位点。综上所述,这些数据支持一种新的模型,其中葡萄糖刺激Cav-1并诱导其与Cdc42的解离,可能是通过Src激酶激活使Cav-1 Tyr14 磷酸化,从而促进Cdc42-βPix结合和Cdc42。激活,并触发下游信号传导并最终维持胰岛素释放。

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