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一种新型“激活开关”基序存在于所有胺能受体中。

A Novel "Activation Switch" Motif Common to All Aminergic Receptors.

机构信息

Computational Chemistry and Molecular Biophysics Section, Molecular Targets and Medications Discovery Branch, National Institute on Drug Abuse─Intramural Research Program, National Institutes of Health, Baltimore, Maryland 21224, United States.

Division of Molecular Therapeutics, New York State Psychiatric Institute, New York, New York 10032, United States.

出版信息

J Chem Inf Model. 2023 Aug 28;63(16):5001-5017. doi: 10.1021/acs.jcim.3c00732. Epub 2023 Aug 4.

Abstract

Aminergic receptors are G protein-coupled receptors (GPCRs) that transduce signals from small endogenous biogenic amines to regulate intracellular signaling pathways. Agonist binding in the ligand binding pocket on the extracellular side opens and prepares a cavity on the intracellular face of the receptors to interact with and activate G proteins and β-arrestins. Here, by reviewing and analyzing all available aminergic receptor structures, we seek to identify activation-related conformational changes that are independent of the specific scaffold of the bound agonist, which we define as "activation conformational changes" (ACCs). While some common intracellular ACCs have been well-documented, identifying common extracellular ACCs, including those in the ligand binding pocket, is complicated by local adjustments to different ligand scaffolds. Our analysis shows no common ACCs at the extracellular ends of the transmembrane helices. Furthermore, the restricted access to the ligand binding pocket identified previously in some receptors is not universal. Notably, the Trp toggle switch and the Pro-Ile-Phe (PIF) motif at the bottom of the ligand binding pocket have previously been proposed to mediate the conformational consequences of ligand binding to the intracellular side of the receptors. Our analysis shows that common ACCs in the ligand binding pocket are associated with the PIF motif and nearby residues, including Trp, but fails to support a shared rotamer toggle associated with activation. However, we identify two common rearrangements between the extracellular and middle subsegments, and propose a novel "activation switch" motif common to all aminergic receptors. This motif includes the middle subsegments of transmembrane helices 3, 5, and 6 and integrates both the PIF motif and Trp.

摘要

胺能受体是 G 蛋白偶联受体 (GPCR),可将内源性生物胺的信号转导到细胞内信号通路,从而调节细胞内信号通路。激动剂与细胞外配体结合口袋的结合会打开并准备好受体细胞内表面的空腔,以与 G 蛋白和β-arrestin 相互作用并激活它们。在这里,通过回顾和分析所有可用的胺能受体结构,我们试图确定与结合激动剂的特定支架无关的激活相关构象变化,我们将其定义为“激活构象变化”(ACCs)。虽然已经很好地记录了一些常见的细胞内 ACC,但识别常见的细胞外 ACC,包括配体结合口袋中的 ACC,由于对不同配体支架的局部调整而变得复杂。我们的分析表明,跨膜螺旋细胞外末端没有共同的 ACC。此外,先前在一些受体中确定的对配体结合口袋的有限访问并非普遍存在。值得注意的是,以前提出的位于配体结合口袋底部的色氨酸翻转开关和脯氨酸-异亮氨酸-苯丙氨酸 (PIF) 基序被认为介导了配体与受体细胞内侧结合的构象后果。我们的分析表明,配体结合口袋中的常见 ACC 与 PIF 基序和附近的残基(包括色氨酸)相关,但不能支持与激活相关的共同旋转体翻转。然而,我们在细胞外和中间亚段之间确定了两个常见的重排,并提出了一种新的“激活开关”基序,该基序存在于所有胺能受体中。该基序包括跨膜螺旋 3、5 和 6 的中间亚段,整合了 PIF 基序和色氨酸。

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