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A Novel GLP1 Receptor Interacting Protein ATP6ap2 Regulates Insulin Secretion in Pancreatic Beta Cells

机译:新型GLP1受体相互作用蛋白ATP6ap2调节胰腺β细胞中的胰岛素分泌。

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摘要

GLP1 activates its receptor, GLP1R, to enhance insulin secretion. The activation and transduction of GLP1R requires complex interactions with a host of accessory proteins, most of which remain largely unknown. In this study, we used membrane-based split ubiquitin yeast two-hybrid assays to identify novel GLP1R interactors in both mouse and human islets. Among these, ATP6ap2 (ATPase H+-transporting lysosomal accessory protein 2) was identified in both mouse and human islet screens. ATP6ap2 was shown to be abundant in islets including both alpha and beta cells. When GLP1R and ATP6ap2 were co-expressed in beta cells, GLP1R was shown to directly interact with ATP6ap2, as assessed by co-immunoprecipitation. In INS-1 cells, overexpression of ATP6ap2 did not affect insulin secretion; however, siRNA knockdown decreased both glucose-stimulated and GLP1-induced insulin secretion. Decreases in GLP1-induced insulin secretion were accompanied by attenuated GLP1 stimulated cAMP accumulation. Because ATP6ap2 is a subunit required for V-ATPase assembly of insulin granules, it has been reported to be involved in granule acidification. In accordance with this, we observed impaired insulin granule acidification upon ATP6ap2 knockdown but paradoxically increased proinsulin secretion. Importantly, as a GLP1R interactor, ATP6ap2 was required for GLP1-induced Ca2+ influx, in part explaining decreased insulin secretion in ATP6ap2 knockdown cells. Taken together, our findings identify a group of proteins that interact with the GLP1R. We further show that one interactor, ATP6ap2, plays a novel dual role in beta cells, modulating both GLP1R signaling and insulin processing to affect insulin secretion.
机译:GLP1激活其受体GLP1R,以增强胰岛素分泌。 GLP1R的激活和转导需要与许多辅助蛋白进行复杂的相互作用,而大多数蛋白仍然是未知的。在这项研究中,我们使用了基于膜的分裂泛素酵母双杂交测定法,以鉴定小鼠和人类胰岛中的新型GLP1R相互作用子。其中,在小鼠和人的胰岛筛选中均鉴定出ATP6ap2(ATP酶H + -运输的溶酶体辅助蛋白2)。 ATP6ap2在包括α和β细胞的胰岛中显示丰富。当GLP1R和ATP6ap2在β细胞中共表达时,GLP1R被证明与ATP6ap2直接相互作用,这是通过免疫共沉淀法评估的。在INS-1细胞中,ATP6ap2的过表达并不影响胰岛素的分泌。但是,siRNA敲低同时降低了葡萄糖刺激和GLP1诱导的胰岛素分泌。 GLP1诱导的胰岛素分泌减少伴随着GLP1刺激的cAMP积累减弱。由于ATP6ap2是胰岛素颗粒V-ATPase组装所必需的亚基,因此据报道它与颗粒酸化有关。据此,我们观察到在敲除ATP6ap2时胰岛素颗粒的酸化受损,但矛盾的是胰岛素原分泌增加。重要的是,作为GLP1R相互作用体,ATP诱导的Ca 2 + 大量涌入需要ATP6ap2,这部分解释了ATP6ap2敲低细胞中胰岛素分泌的减少。综上所述,我们的发现确定了一组与GLP1R相互作用的蛋白质。我们进一步表明,一个相互作用因子ATP6ap2,在β细胞中起着新型双重作用,调节GLP1R信号传导和胰岛素加工来影响胰岛素分泌。

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