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β-抑制蛋白的小分子调节剂

Small Molecule Modulators of β-arrestins.

作者信息

Kahsai Alem W, Pakharukova Natalia, Kwon Henry Y, Shah Kunal S, Liang-Lin Jason G, Del Real Caroline T, Shim Paul J, Lee Mason A, Ngo Van A, Shreiber Bowie N, Liu Samuel, Schwalb Allison M, Espinoza Emmanuel F, Thomas Brittany N, Kunzle Cal A, Smith Jeffrey S, Wang Jialu, Kim Jihee, Zhang Xingdong, Rockman Howard A, Thomsen Alex R B, Rein Lindsay A M, Shi Lei, Ahn Seungkirl, Masoudi Ali, Lefkowitz Robert J

出版信息

bioRxiv. 2024 Dec 27:2024.12.27.630464. doi: 10.1101/2024.12.27.630464.

Abstract

UNLABELLED

β-arrestins (βarrs) are key regulators of G protein-coupled receptors (GPCRs), essential for modulating signaling pathways and physiological processes. While current pharmacological strategies target GPCR orthosteric and allosteric sites, as well as G protein transducers, comparable tools for studying βarrs are lacking. Here, we present the discovery and characterization of novel small-molecule allosteric inhibitors of βarrs through comprehensive biophysical, biochemical, pharmacological, and structural analyses. These inhibitors disrupt βarr interactions with agonist-activated GPCRs, impairing receptor internalization, desensitization, and βarr-mediated physiological functions. A cryo-EM structure of βarr1 in complex with the allosteric inhibitor Cmpd-5, complemented by molecular dynamics simulations and mutagenesis studies, reveals that Cmpd-5 binds within a cryptic cleft formed by the middle, C-, and lariat loops-a critical site for βarr activation and recruitment to GPCRs. Thus, Cmpd-5 acts as a molecular lock, hindering βarr1 activation via an allosteric mechanism. These findings introduce novel strategies and tools for probing βarr functions.

HIGHLIGHTS

Small molecule strategies for modulating βarr functions in both GPCR-dependent and independent contexts.Modulators disrupt βarr interaction with GPCRs, impairing their critical functions.Cryo-EM structures reveal the allosteric inhibitor Cmpd-5 binding to a cryptic pocket between the N and C domains in the central crest of βarr1, inhibiting its activation.Structural analyses, including cryo-EM, MD simulations, and mutagenesis, reveal a unique βarr1 conformation induced by Cmpd-5, shedding light on its mechanism of allosteric inhibition.

摘要

未标记

β-抑制蛋白(βarrs)是G蛋白偶联受体(GPCRs)的关键调节因子,对调节信号通路和生理过程至关重要。虽然目前的药理学策略靶向GPCR的正构和变构位点以及G蛋白转导子,但缺乏用于研究βarrs的类似工具。在这里,我们通过全面的生物物理、生化、药理学和结构分析,介绍了新型βarrs小分子变构抑制剂的发现和表征。这些抑制剂破坏βarr与激动剂激活的GPCR的相互作用,损害受体内化、脱敏和βarr介导的生理功能。βarr1与变构抑制剂Cmpd-5复合物的冷冻电镜结构,辅以分子动力学模拟和诱变研究,表明Cmpd-5结合在由中间、C-和套索环形成的隐蔽裂隙内——这是βarr激活和募集到GPCR的关键位点。因此,Cmpd-5充当分子锁,通过变构机制阻碍βarr1激活。这些发现引入了探测βarr功能的新策略和工具。

亮点

在GPCR依赖和独立的背景下调节βarr功能的小分子策略。调节剂破坏βarr与GPCR的相互作用,损害其关键功能。冷冻电镜结构揭示变构抑制剂Cmpd-5与βarr1中央嵴的N和C结构域之间的隐蔽口袋结合,抑制其激活。包括冷冻电镜、分子动力学模拟和诱变在内的结构分析揭示了Cmpd-5诱导的独特βarr1构象,阐明了其变构抑制机制。

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Small Molecule Modulators of β-arrestins.β-抑制蛋白的小分子调节剂
bioRxiv. 2024 Dec 27:2024.12.27.630464. doi: 10.1101/2024.12.27.630464.

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