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中下位质谱揭示了一类 C 型 G 蛋白偶联受体中的活性修饰磷酸化条码。

Middle-Down Mass Spectrometry Reveals Activity-Modifying Phosphorylation Barcode in a Class C G Protein-Coupled Receptor.

机构信息

Department of Chemistry, Northwestern University, Evanston, Illinois 60208 United States.

Department of Neuroscience, The Scripps Research Institute, Jupiter, Florida 33458, United States.

出版信息

J Am Chem Soc. 2022 Dec 21;144(50):23104-23114. doi: 10.1021/jacs.2c10697. Epub 2022 Dec 7.

Abstract

G protein-coupled receptors (GPCRs) are the largest family of membrane receptors in humans. They mediate nearly all aspects of human physiology and thus are of high therapeutic interest. GPCR signaling is regulated in space and time by receptor phosphorylation. It is believed that different phosphorylation states are possible for a single receptor, and each encodes for unique signaling outcomes. Methods to determine the phosphorylation status of GPCRs are critical for understanding receptor physiology and signaling properties of GPCR ligands and therapeutics. However, common proteomic techniques have provided limited quantitative information regarding total receptor phosphorylation stoichiometry, relative abundances of isomeric modification states, and temporal dynamics of these parameters. Here, we report a novel middle-down proteomic strategy and parallel reaction monitoring (PRM) to quantify the phosphorylation states of the C-terminal tail of metabotropic glutamate receptor 2 (mGluR2). By this approach, we found that mGluR2 is subject to both basal and agonist-induced phosphorylation at up to four simultaneous sites with varying probability. Using a PRM tandem mass spectrometry methodology, we localized the positions and quantified the relative abundance of phosphorylations following treatment with an agonist. Our analysis showed that phosphorylation within specific regions of the C-terminal tail of mGluR2 is sensitive to receptor activation, and subsequent site-directed mutagenesis of these sites identified key regions which tune receptor sensitivity. This study demonstrates that middle-down purification followed by label-free quantification is a powerful, quantitative, and accessible tool for characterizing phosphorylation states of GPCRs and other challenging proteins.

摘要

G 蛋白偶联受体(GPCRs)是人类最大的膜受体家族。它们介导人类生理的几乎所有方面,因此具有很高的治疗价值。GPCR 信号受受体磷酸化的时空调节。据信,单个受体可能存在不同的磷酸化状态,每种状态都编码独特的信号转导结果。确定 GPCR 磷酸化状态的方法对于理解受体生理学以及 GPCR 配体和治疗药物的信号转导特性至关重要。然而,常见的蛋白质组学技术仅提供了关于总受体磷酸化化学计量、异构修饰状态的相对丰度以及这些参数的时间动态的有限定量信息。在这里,我们报告了一种新的中尺度蛋白质组学策略和平行反应监测(PRM),用于定量代谢型谷氨酸受体 2(mGluR2)C 端尾部的磷酸化状态。通过这种方法,我们发现 mGluR2 可同时在多达四个同时存在的位点发生基础和激动剂诱导的磷酸化,其概率各不相同。使用 PRM 串联质谱方法,我们定位了在激动剂处理后磷酸化的位置并定量了其相对丰度。我们的分析表明,mGluR2 C 端尾部特定区域内的磷酸化对受体激活敏感,并且对这些位点的定点突变鉴定出了调节受体敏感性的关键区域。这项研究表明,中尺度纯化后进行无标记定量是一种强大、定量且易于使用的工具,可用于表征 GPCR 和其他具有挑战性的蛋白质的磷酸化状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5af8/9785046/95bef01528e5/ja2c10697_0002.jpg

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