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膜胆固醇对选定的A类G蛋白偶联受体结构和功能的影响——挑战与未来展望

Effects of Membrane Cholesterol on the Structure and Function of Selected Class A GPCRs─Challenges and Future Perspectives.

作者信息

Christofidi Marina, Tzortzini Efpraxia, Mavromoustakos Thomas, Kolocouris Antonios

机构信息

Laboratory of Medicinal Chemistry, Section of Pharmaceutical Chemistry, Department of Pharmacy, School of Health Sciences, National and Kapodistrian University of Athens, Panepistimiopolis-Zografou, 15771 Athens, Greece.

Department of Nutritional Science and Dietetics, School of Health Sciences, University of the Peloponnese, Antikalamos, 24100 Kalamata, Greece.

出版信息

Biochemistry. 2025 Oct 7;64(19):4011-4049. doi: 10.1021/acs.biochem.5c00145. Epub 2025 Aug 8.

Abstract

Cholesterol can affect class A G protein-coupled receptors (GPCRs) function since it can modulate membrane properties, but can also bind to allosteric sites, with positions and numbers that can be general and conserved or can depend on the unique receptor and its functional state. The reliable identification and characterization of cholesterol-interaction sites, which can help toward the development of novel allosteric drugs, is challenging, but different biophysical methods, such as structural biology and molecular dynamics simulations, can be combined toward this aim. We reviewed results for 14 receptors selected based on phylogenetic relationships, functional relevance, and their established significance as therapeutic targets. The precise mechanistic interpretation of the effect of cholesterol at a molecular level is generally ambiguous for many class A GPCRs. Additionally, the experimentally observed effect of cholesterol on the function of a receptor often varies, likely due to variations in experimental systems, including cell types, lipid environments, protein constructs, or methodological differences. To elucidate the role of cholesterol in GPCR function, a robust methodological framework is required─one that integrates diverse biophysical techniques with carefully controlled experimental conditions, particularly regarding membrane composition and cellular context. Additionally, combining insights from both in vitro and in vivo studies is crucial for developing a comprehensive understanding of cholesterol's role in GPCR modulation.

摘要

胆固醇可影响A类G蛋白偶联受体(GPCR)的功能,因为它既能调节膜的性质,也能结合到变构位点,其位置和数量可能是普遍且保守的,也可能取决于独特的受体及其功能状态。可靠地识别和表征胆固醇相互作用位点有助于新型变构药物的开发,但这具有挑战性,不过可以结合不同的生物物理方法,如结构生物学和分子动力学模拟来实现这一目标。我们回顾了基于系统发育关系、功能相关性及其作为治疗靶点已确立的重要性而选择的14种受体的研究结果。对于许多A类GPCR,在分子水平上对胆固醇作用的精确机制解释通常并不明确。此外,实验观察到的胆固醇对受体功能的影响往往各不相同,这可能是由于实验系统的差异,包括细胞类型、脂质环境、蛋白质构建体或方法学差异。为了阐明胆固醇在GPCR功能中的作用,需要一个强大的方法框架——一个将多种生物物理技术与精心控制的实验条件相结合的框架,特别是在膜组成和细胞环境方面。此外,将体外和体内研究的见解结合起来对于全面理解胆固醇在GPCR调节中的作用至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de6c/12509330/cac4e1234ad2/bi5c00145_0001.jpg

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