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单分子成像揭示了偏向信号传导中 AT1R 的差异计量比变化。

Single-Molecule Imaging Reveals Differential AT1R Stoichiometry Change in Biased Signaling.

机构信息

Key Laboratory of Molecular Nanostructure and Nanotechnology, CAS Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Int J Mol Sci. 2023 Dec 27;25(1):374. doi: 10.3390/ijms25010374.

Abstract

G protein-coupled receptors (GPCRs) represent promising therapeutic targets due to their involvement in numerous physiological processes mediated by downstream G protein- and β-arrestin-mediated signal transduction cascades. Although the precise control of GPCR signaling pathways is therapeutically valuable, the molecular details for governing biased GPCR signaling remain elusive. The Angiotensin II type 1 receptor (AT1R), a prototypical class A GPCR with profound implications for cardiovascular functions, has become a focal point for biased ligand-based clinical interventions. Herein, we used single-molecule live-cell imaging techniques to evaluate the changes in stoichiometry and dynamics of AT1R with distinct biased ligand stimulations in real time. It was revealed that AT1R existed predominantly in monomers and dimers and underwent oligomerization upon ligand stimulation. Notably, β-arrestin-biased ligands induced the formation of higher-order aggregates, resulting in a slower diffusion profile for AT1R compared to G protein-biased ligands. Furthermore, we demonstrated that the augmented aggregation of AT1R, triggered by activation from each biased ligand, was completely abrogated in β-arrestin knockout cells. These findings furnish novel insights into the intricate relationship between GPCR aggregation states and biased signaling, underscoring the pivotal role of molecular behaviors in guiding the development of selective therapeutic agents.

摘要

G 蛋白偶联受体 (GPCRs) 是极具潜力的治疗靶点,因为它们参与了许多生理过程,这些生理过程是由下游 G 蛋白和β-arrestin 介导的信号转导级联介导的。虽然 GPCR 信号通路的精确控制具有治疗价值,但调控偏向性 GPCR 信号的分子细节仍不清楚。血管紧张素 II 型 1 受体 (AT1R) 是一种典型的 A 类 GPCR,对心血管功能有深远的影响,它已成为基于配体的偏向性临床干预的焦点。在此,我们使用单分子活细胞成像技术实时评估了不同偏向性配体刺激对 AT1R 计量和动力学的变化。结果表明,AT1R 主要以单体和二聚体形式存在,并在配体刺激下发生寡聚化。值得注意的是,β-arrestin 偏向性配体诱导形成更高阶的聚集物,导致 AT1R 的扩散谱比 G 蛋白偏向性配体更慢。此外,我们证明了每种偏向性配体激活引发的 AT1R 聚集增加在β-arrestin 敲除细胞中完全被消除。这些发现为 GPCR 聚集状态和偏向性信号之间的复杂关系提供了新的见解,强调了分子行为在指导选择性治疗剂开发中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f409/10778740/178aa983093f/ijms-25-00374-g001.jpg

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