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通过第三细胞内环调节 G 蛋白偶联受体信号转导。

Autoregulation of GPCR signalling through the third intracellular loop.

机构信息

Biochemistry, Molecular Biology and Biophysics Graduate Program, University of Minnesota, Minneapolis, MN, USA.

Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN, USA.

出版信息

Nature. 2023 Mar;615(7953):734-741. doi: 10.1038/s41586-023-05789-z. Epub 2023 Mar 8.

Abstract

The third intracellular loop (ICL3) of the G protein-coupled receptor (GPCR) fold is important for the signal transduction process downstream of receptor activation. Despite this, the lack of a defined structure of ICL3, combined with its high sequence divergence among GPCRs, complicates characterization of its involvement in receptor signalling. Previous studies focusing on the β adrenergic receptor (βAR) suggest that ICL3 is involved in the structural process of receptor activation and signalling. Here we derive mechanistic insights into the role of ICL3 in βAR signalling, observing that ICL3 autoregulates receptor activity through a dynamic conformational equilibrium between states that block or expose the receptor's G protein-binding site. We demonstrate the importance of this equilibrium for receptor pharmacology, showing that G protein-mimetic effectors bias the exposed states of ICL3 to allosterically activate the receptor. Our findings additionally reveal that ICL3 tunes signalling specificity by inhibiting receptor coupling to G protein subtypes that weakly couple to the receptor. Despite the sequence diversity of ICL3, we demonstrate that this negative G protein-selection mechanism through ICL3 extends to GPCRs across the superfamily, expanding the range of known mechanisms by which receptors mediate G protein subtype selective signalling. Furthermore, our collective findings suggest ICL3 as an allosteric site for receptor- and signalling pathway-specific ligands.

摘要

G 蛋白偶联受体 (GPCR) 折叠的第三个细胞内环 (ICL3) 对于受体激活下游的信号转导过程很重要。尽管如此,ICL3 缺乏明确的结构,加上其在 GPCR 之间的高度序列差异,使得其在受体信号转导中的作用难以确定。以前针对β肾上腺素能受体 (βAR) 的研究表明,ICL3 参与受体激活和信号转导的结构过程。在这里,我们深入了解了 ICL3 在 βAR 信号转导中的作用,观察到 ICL3 通过在阻止或暴露受体 G 蛋白结合位点的状态之间的动态构象平衡来自我调节受体活性。我们证明了这种平衡对于受体药理学的重要性,表明 G 蛋白模拟效应物通过变构激活受体来偏向 ICL3 的暴露状态。我们的发现还表明,ICL3 通过抑制与受体弱偶联的 G 蛋白亚型的受体偶联来调节信号转导的特异性。尽管 ICL3 的序列多样性很大,但我们证明了这种通过 ICL3 进行的负 G 蛋白选择机制延伸到了整个超家族的 GPCR,扩展了已知的受体介导 G 蛋白亚型选择性信号转导的机制范围。此外,我们的综合研究结果表明 ICL3 是受体和信号通路特异性配体的变构位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8909/10033409/b0375c2c0bbe/41586_2023_5789_Fig1_HTML.jpg

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