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通过合成内体对 G 蛋白偶联受体诱导的β-arrestin 转运和信号的变构调节。

Allosteric modulation of GPCR-induced β-arrestin trafficking and signaling by a synthetic intrabody.

机构信息

Department of Biological Sciences and Bioengineering, Indian Institute of Technology, Kanpur, 208016, India.

Department of Pharmacology and Therapeutics, McGill University, Montréal, QC, H3G 1Y6, Canada.

出版信息

Nat Commun. 2022 Aug 8;13(1):4634. doi: 10.1038/s41467-022-32386-x.

Abstract

Agonist-induced phosphorylation of G protein-coupled receptors (GPCRs) is a primary determinant of β-arrestin (βarr) recruitment and trafficking. For several GPCRs such as the vasopressin receptor subtype 2 (VR), agonist-stimulation first drives the translocation of βarrs to the plasma membrane, followed by endosomal trafficking, which is generally considered to be orchestrated by multiple phosphorylation sites. We have previously shown that mutation of a single phosphorylation site in the VR (i.e., VR) results in near-complete loss of βarr translocation to endosomes despite robust recruitment to the plasma membrane, and compromised ERK1/2 activation. Here, we discover that a synthetic intrabody (Ib30), which selectively recognizes activated βarr1, efficiently rescues the endosomal trafficking of βarr1 and ERK1/2 activation for VR. Molecular dynamics simulations reveal that Ib30 enriches active-like βarr1 conformation with respect to the inter-domain rotation, and cellular assays demonstrate that it also enhances βarr1-β-adaptin interaction. Our data provide an experimental framework to positively modulate the receptor-transducer-effector axis for GPCRs using intrabodies, which can be potentially integrated in the paradigm of GPCR-targeted drug discovery.

摘要

激动剂诱导的 G 蛋白偶联受体 (GPCR) 的磷酸化是 β-抑制蛋白 (βarr) 募集和转运的主要决定因素。对于几种 GPCR 如血管加压素受体亚型 2 (VR),激动剂刺激首先驱动 βarr 向质膜易位,随后是内体转运,通常认为这是由多个磷酸化位点协调的。我们之前已经表明,VR 中单个磷酸化位点的突变(即 VR)导致βarr 向内体的易位几乎完全丧失,尽管其向质膜的募集仍很强烈,但 ERK1/2 的激活受损。在这里,我们发现一种合成的内体 (Ib30),它选择性地识别激活的βarr1,有效地挽救了βarr1 和 ERK1/2 激活的内体转运。分子动力学模拟表明,Ib30 相对于结构域间旋转丰富了活性样的βarr1 构象,细胞测定表明它也增强了βarr1-β-衔接蛋白的相互作用。我们的数据为使用内体正向调节 GPCR 的受体转导效应器轴提供了一个实验框架,这可以潜在地整合到 GPCR 靶向药物发现的范例中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab22/9360436/96e1a0c98ceb/41467_2022_32386_Fig1_HTML.jpg

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