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Advances in G protein-coupled receptor allostery: From function to structure

机译:G蛋白偶联受体的变构研究进展:从功能到结构

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It is now widely accepted that G protein-coupled receptors (GPCRs) are highly dynamic proteins that adopt multiple active states linked to distinct functional outcomes. Furthermore, these states can be differentially stabilized not only by orthosteric ligands but also by allosteric ligands acting at spatially distinct binding sites. The key pharmacologic characteristics of GPCR allostery include improved selectivity due to either greater sequence divergence between receptor subtypes and/or subtype-selective cooperativity, a ceiling level to the effect, probe dependence (whereby the magnitude and direction of the allosteric effect change with the nature of the interacting ligands), and the potential for biased signaling. Recent chemical biology developments are beginning to demonstrate how the incorporation of analytical pharmacology and operational modeling into the experimental workflow can enrich structure-activity studies of allostery and bias, and have also led to the discovery of a new class of hybrid orthosteric/ allosteric (bitopic) molecules. The potential for endogenous allosteric modulators to play a role in physiology and disease remains to be fully appreciated but will likely represent an important area for future studies. Finally, breakthroughs in structural and computational biology are beginning to unravel the mechanistic basis of GPCR allosteric modulation at the molecular level.
机译:现在,广泛接受的是G蛋白偶联受体(GPCR)是高度动态的蛋白,它采用与不同功能结果相关的多个活性状态。此外,这些状态不仅可以通过正构配体而且可以通过在空间上不同的结合位点起作用的变构配体来差异稳定。 GPCR变构物的关键药理学特性包括由于受体亚型和/或亚型选择性协同作用之间更大的序列差异,选择性的最高水平,探针依赖性(因此,变构作用的强度和方向随自然而变)导致的选择性提高。相互作用的配体),以及潜在的信号传导障碍。最近的化学生物学进展开始证明将分析药理学和操作模型纳入实验工作流程如何丰富变构和偏向的构效研究,并且还导致发现了一类新的杂构正构/变构(双位) )分子。内源性变构调节剂在生理和疾病中发挥作用的潜力尚待充分认识,但可能代表未来研究的重要领域。最终,结构和计算生物学的突破开始揭示分子水平上GPCR变构调节的机理基础。

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