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CXCR4-CXCR7 系统中固有跨膜耦联偏倚的分子机制。

Molecular insights into intrinsic transducer-coupling bias in the CXCR4-CXCR7 system.

机构信息

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

Graduate School of Pharmaceutical Sciences, Tohoku University, Sendai, Miyagi, 980-8578, Japan.

出版信息

Nat Commun. 2023 Aug 9;14(1):4808. doi: 10.1038/s41467-023-40482-9.

Abstract

Chemokine receptors constitute an important subfamily of G protein-coupled receptors (GPCRs), and they are critically involved in a broad range of immune response mechanisms. Ligand promiscuity among these receptors makes them an interesting target to explore multiple aspects of biased agonism. Here, we comprehensively characterize two chemokine receptors namely, CXCR4 and CXCR7, in terms of their transducer-coupling and downstream signaling upon their stimulation by a common chemokine agonist, CXCL12, and a small molecule agonist, VUF11207. We observe that CXCR7 lacks G-protein-coupling while maintaining robust βarr recruitment with a major contribution of GRK5/6. On the other hand, CXCR4 displays robust G-protein activation as expected but exhibits significantly reduced βarr-coupling compared to CXCR7. These two receptors induce distinct βarr conformations even when activated by the same agonist, and CXCR7, unlike CXCR4, fails to activate ERK1/2 MAP kinase. We also identify a key contribution of a single phosphorylation site in CXCR7 for βarr recruitment and endosomal localization. Our study provides molecular insights into intrinsic-bias encoded in the CXCR4-CXCR7 system with broad implications for drug discovery.

摘要

趋化因子受体是 G 蛋白偶联受体 (GPCR) 的一个重要亚家族,它们在广泛的免疫反应机制中起着至关重要的作用。这些受体之间的配体混杂性使它们成为探索偏性激动作用的多个方面的有趣目标。在这里,我们全面描述了两种趋化因子受体,即 CXCR4 和 CXCR7,它们在受到共同趋化因子激动剂 CXCL12 和小分子激动剂 VUF11207 刺激时的转导偶联和下游信号。我们观察到 CXCR7 缺乏 G 蛋白偶联,同时保持了强大的βarr 募集,主要由 GRK5/6 贡献。另一方面,CXCR4 表现出预期的强大 G 蛋白激活,但与 CXCR7 相比,βarr 偶联显著减少。即使被相同的激动剂激活,这两种受体也会诱导不同的βarr 构象,而且与 CXCR4 不同,CXCR7 无法激活 ERK1/2 MAP 激酶。我们还确定了 CXCR7 中一个单一磷酸化位点对βarr 募集和内体定位的关键贡献。我们的研究为 CXCR4-CXCR7 系统中的内在偏倚提供了分子见解,对药物发现具有广泛的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3fd/10412580/786ea2c9c499/41467_2023_40482_Fig1_HTML.jpg

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