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胰腺β细胞中胰高血糖素样肽-1受体胆固醇结合位点的分子定位与功能验证。

Molecular mapping and functional validation of GLP-1R cholesterol binding sites in pancreatic beta cells.

作者信息

Oqua Affiong Ika, Chao Kin, El Eid Liliane, Casteller Lisa, Baxter Billy P, Miguéns-Gómez Alba, Barg Sebastian, Jones Ben, Bernardino de la Serna Jorge, Rouse Sarah L, Tomas Alejandra

机构信息

Section of Cell Biology and Functional Genomics, Division of Diabetes, Endocrinology and Metabolism, Department of Metabolism, Digestion and Reproduction, Imperial College London, London, United Kingdom.

Department of Life Sciences, Imperial College London, London, United Kingdom.

出版信息

Elife. 2025 Apr 24;13:RP101011. doi: 10.7554/eLife.101011.

Abstract

G protein-coupled receptors (GPCRs) are integral membrane proteins which closely interact with their plasma membrane lipid microenvironment. Cholesterol is a lipid enriched at the plasma membrane with pivotal roles in the control of membrane fluidity and maintenance of membrane microarchitecture, directly impacting on GPCR stability, dynamics, and function. Cholesterol extraction from pancreatic beta cells has previously been shown to disrupt the internalisation, clustering, and cAMP responses of the glucagon-like peptide-1 receptor (GLP-1R), a class B1 GPCR with key roles in the control of blood glucose levels via the potentiation of insulin secretion in beta cells and weight reduction via the modulation of brain appetite control centres. Here, we unveil the detrimental effect of a high cholesterol diet on GLP-1R-dependent glucoregulation in vivo, and the improvement in GLP-1R function that a reduction in cholesterol synthesis using simvastatin exerts in pancreatic islets. We next identify and map sites of cholesterol high occupancy and residence time on active inactive GLP-1Rs using coarse-grained molecular dynamics (cgMD) simulations, followed by a screen of key residues selected from these sites and detailed analyses of the effects of mutating one of these, Val229, to alanine on GLP-1R-cholesterol interactions, plasma membrane behaviours, clustering, trafficking and signalling in INS-1 832/3 rat pancreatic beta cells and primary mouse islets, unveiling an improved insulin secretion profile for the V229A mutant receptor. This study (1) highlights the role of cholesterol in regulating GLP-1R responses in vivo; (2) provides a detailed map of GLP-1R - cholesterol binding sites in model membranes; (3) validates their functional relevance in beta cells; and (4) highlights their potential as locations for the rational design of novel allosteric modulators with the capacity to fine-tune GLP-1R responses.

摘要

G蛋白偶联受体(GPCRs)是整合膜蛋白,与质膜脂质微环境密切相互作用。胆固醇是一种富集于质膜的脂质,在控制膜流动性和维持膜微结构方面起着关键作用,直接影响GPCR的稳定性、动力学和功能。先前的研究表明,从胰腺β细胞中提取胆固醇会破坏胰高血糖素样肽-1受体(GLP-1R)的内化、聚集和cAMP反应。GLP-1R是一种B1类GPCR,通过增强β细胞胰岛素分泌来控制血糖水平,并通过调节大脑食欲控制中心来减轻体重,发挥着关键作用。在这里,我们揭示了高胆固醇饮食对体内GLP-1R依赖性葡萄糖调节的有害影响,以及使用辛伐他汀降低胆固醇合成对胰岛中GLP-1R功能的改善作用。接下来,我们使用粗粒度分子动力学(cgMD)模拟确定并绘制了活性/非活性GLP-1R上胆固醇高占据和停留时间的位点,然后从这些位点筛选关键残基,并详细分析将其中一个残基Val229突变为丙氨酸对INS-1 832/3大鼠胰腺β细胞和原代小鼠胰岛中GLP-1R-胆固醇相互作用、质膜行为、聚集、转运和信号传导的影响,揭示了V229A突变受体改善的胰岛素分泌情况。本研究(1)强调了胆固醇在体内调节GLP-1R反应中的作用;(2)提供了模型膜中GLP-1R-胆固醇结合位点的详细图谱;(3)验证了它们在β细胞中的功能相关性;(4)强调了它们作为合理设计新型变构调节剂的潜在位置,这些调节剂能够微调GLP-1R反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23d1/12021413/1d227adf5dfa/elife-101011-fig1.jpg

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