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Role of Hsp90 in Biogenesis of the β-Cell ATP-sensitive Potassium Channel Complex

机译:Hsp90在β细胞ATP敏感性钾通道复合物的生物发生中的作用

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The pancreatic β-cell ATP-sensitive potassium (KATP) channel is a multimeric protein complex composed of four inwardly rectifying potassium channel (Kir6.2) and four sulfonylurea receptor 1 (SUR1) subunits. KATP channels play a key role in glucose-stimulated insulin secretion by linking glucose metabolism to membrane excitability. Many SUR1 and Kir6.2 mutations reduce channel function by disrupting channel biogenesis and processing, resulting in insulin secretion disease. To better understand the mechanisms governing KATP channel biogenesis, a proteomics approach was used to identify chaperone proteins associated with KATP channels. We report that chaperone proteins heat-shock protein (Hsp)90, heat-shock cognate protein (Hsc)70, and Hsp40 are associated with β-cell KATP channels. Pharmacologic inhibition of Hsp90 function by geldanamycin reduces, whereas overexpression of Hsp90 increases surface expression of wild-type KATP channels. Coimmunoprecipitation data indicate that channel association with the Hsp90 complex is mediated through SUR1. Accordingly, manipulation of Hsp90 protein expression or function has significant effects on the biogenesis efficiency of SUR1, but not Kir6.2, expressed alone. Interestingly, overexpression of Hsp90 selectively improved surface expression of mutant channels harboring a subset of disease-causing SUR1 processing mutations. Our study demonstrates that Hsp90 regulates biogenesis efficiency of heteromeric KATP channels via SUR1, thereby affecting functional expression of the channel in β-cell membrane.
机译:胰β细胞ATP敏感性钾(K ATP )通道是一种多聚体蛋白复合物,由四个向内整流的钾通道(Kir6.2)和四个磺酰脲受体1(SUR1)亚基组成。 K ATP 通道通过将葡萄糖代谢与膜兴奋性联系起来,在葡萄糖刺激的胰岛素分泌中起关键作用。许多SUR1和Kir6.2突变通过破坏通道的生物发生和过程来降低通道功能,从而导致胰岛素分泌疾病。为了更好地了解控制K ATP 通道生物发生的机制,采用蛋白质组学方法来鉴定与K ATP 通道相关的伴侣蛋白。我们报告伴侣蛋白热休克蛋白(Hsp)90,热休克同源蛋白(Hsc)70和Hsp40与β细胞K ATP 通道相关。格尔德霉素对Hsp90功能的药理抑制作用减少,而Hsp90的过表达则增加野生型K ATP 通道的表面表达。免疫共沉淀数据表明与Hsp90复合体的通道缔合是通过SUR1介导的。因此,Hsp90蛋白表达或功能的操纵对SUR1的生物发生效率有明显影响,而单独表达的Kir6.2则没有。有趣的是,Hsp90的过表达选择性地改善了突变通道的表面表达,该通道具有引起疾病的SUR1加工突变的子集。我们的研究表明,Hsp90通过SUR1调节异聚K ATP 通道的生物发生效率,从而影响该通道在β细胞膜中的功能性表达。

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