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捕获肽-GPCR 相互作用及其动态。

Capturing Peptide-GPCR Interactions and Their Dynamics.

机构信息

Faculty of Life Sciences, Institute of Biochemistry, Leipzig University, Brüderstr. 34, D-04103 Leipzig, Germany.

出版信息

Molecules. 2020 Oct 15;25(20):4724. doi: 10.3390/molecules25204724.

Abstract

Many biological functions of peptides are mediated through G protein-coupled receptors (GPCRs). Upon ligand binding, GPCRs undergo conformational changes that facilitate the binding and activation of multiple effectors. GPCRs regulate nearly all physiological processes and are a favorite pharmacological target. In particular, drugs are sought after that elicit the recruitment of selected effectors only (biased ligands). Understanding how ligands bind to GPCRs and which conformational changes they induce is a fundamental step toward the development of more efficient and specific drugs. Moreover, it is emerging that the dynamic of the ligand-receptor interaction contributes to the specificity of both ligand recognition and effector recruitment, an aspect that is missing in structural snapshots from crystallography. We describe here biochemical and biophysical techniques to address ligand-receptor interactions in their structural and dynamic aspects, which include mutagenesis, crosslinking, spectroscopic techniques, and mass-spectrometry profiling. With a main focus on peptide receptors, we present methods to unveil the ligand-receptor contact interface and methods that address conformational changes both in the ligand and the GPCR. The presented studies highlight a wide structural heterogeneity among peptide receptors, reveal distinct structural changes occurring during ligand binding and a surprisingly high dynamics of the ligand-GPCR complexes.

摘要

许多肽的生物学功能是通过 G 蛋白偶联受体(GPCR)介导的。配体结合后,GPCR 发生构象变化,促进多个效应器的结合和激活。GPCR 调节几乎所有的生理过程,是药理学的首选靶点。特别是,人们正在寻找只募集特定效应器的药物(偏向配体)。了解配体如何与 GPCR 结合以及它们诱导哪些构象变化,是开发更有效和更具特异性的药物的基本步骤。此外,越来越多的证据表明,配体-受体相互作用的动态有助于配体识别和效应器募集的特异性,这是晶体学结构快照中缺失的一个方面。我们在这里描述了用于研究配体-受体相互作用的生化和生物物理技术,包括突变、交联、光谱技术和质谱分析。我们主要关注肽受体,介绍了揭示配体-受体接触界面的方法,以及研究配体和 GPCR 构象变化的方法。这些研究强调了肽受体之间广泛的结构异质性,揭示了配体结合过程中发生的不同结构变化,以及配体-GPCR 复合物令人惊讶的高动态性。

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