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肽激素-GPCR 分析的范例。

A Paradigm for Peptide Hormone-GPCR Analyses.

机构信息

Department of Chemistry, College of Staten Island, CUNY, 2800 Victory Blvd, Staten Island, NY 10314, USA.

Department of Microbiology, University of Tennessee, 610 Ken and Blaire Mossman Building, 1311 Cumberland Avenue, Knoxville, TN 37996, USA.

出版信息

Molecules. 2020 Sep 18;25(18):4272. doi: 10.3390/molecules25184272.

Abstract

Work from our laboratories over the last 35 years that has focused on Ste2p, a G protein-coupled receptor (GPCR), and its tridecapeptide ligand α-factor is reviewed. Our work utilized the yeast as a model system for understanding peptide-GPCR interactions. It explored the structure and function of synthetic α-factor analogs and biosynthetic receptor domains, as well as designed mutations of Ste2p. The results and conclusions are described using the nuclear magnetic resonance interrogation of synthetic Ste2p transmembrane domains (TMs), the fluorescence interrogation of agonist and antagonist binding, the biochemical crosslinking of peptide analogs to Ste2p, and the phenotypes of receptor mutants. We identified the ligand-binding domain in Ste2p, the functional assemblies of TMs, unexpected and interesting ligand analogs; gained insights into the bound α-factor structure; and unraveled the function and structures of various Ste2p domains, including the N-terminus, TMs, loops connecting the TMs, and the C-terminus. Our studies showed interactions between specific residues of Ste2p in an active state, but not resting state, and the effect of ligand activation on the dimerization of Ste2p. We show that, using a battery of different biochemical and genetic approaches, deep insight can be gained into the structure and conformational dynamics of GPCR-peptide interactions in the absence of a crystal structure.

摘要

我们实验室在过去 35 年中专注于 Ste2p(一种 G 蛋白偶联受体(GPCR))及其十三肽配体α因子的研究。我们的工作利用酵母作为模型系统来理解肽-GPCR 相互作用。我们探索了合成α因子类似物和生物合成受体结构域的结构和功能,以及 Ste2p 的设计突变。使用合成 Ste2p 跨膜结构域(TMs)的核磁共振探测、激动剂和拮抗剂结合的荧光探测、肽类似物与 Ste2p 的生化交联以及受体突变体的表型来描述结果和结论。我们确定了 Ste2p 中的配体结合域、TMs 的功能组装体、意想不到的有趣的配体类似物;深入了解了结合的α因子结构;并揭示了各种 Ste2p 结构域,包括 N 末端、TMs、连接 TM 的环和 C 末端的功能和结构。我们的研究表明,在活性状态下而非静止状态下,Ste2p 中的特定残基相互作用,并且配体激活对 Ste2p 二聚化的影响。我们表明,使用一系列不同的生化和遗传方法,可以在没有晶体结构的情况下深入了解 GPCR-肽相互作用的结构和构象动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cfd/7570734/957e5d37724e/molecules-25-04272-g001.jpg

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