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Asymmetry of GPCR oligomers supports their functional relevance.

机译:GPCR低聚物的不对称性支持其功能相关性。

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G protein-coupled receptors (GPCRs) can exist as dimers or as larger oligomeric clusters that enable intercommunication between different receptor protomers within the same complex. This phenomenon is observed at three distinct levels: (i) at the level of ligand binding where the activation of one protomer can allosterically inhibit or facilitate ligand binding to the second protomer; (ii) at the level of ligand-induced conformational switches, which occur between transmembrane domains of the two protomers; and (iii) within GPCR-associated protein complexes, either directly at the level of GPCR-interacting proteins or at further downstream levels of the complex. Intercommunication at these different levels introduces asymmetry within GPCR dimers wherein each protomer fulfills its specific task. In this review, we discuss how the asymmetric behavior of GPCRs highlights the advantage of oligomeric receptor organization and supports the functional relevance of GPCR dimerization.
机译:G蛋白偶联受体(GPCR)可以二聚体形式存在,也可以以较大的寡聚簇形式存在,从而使同一复合物中不同受体启动子之间能够相互通讯。在三个不同的水平上观察到这种现象:(i)在一个原激活物的激活可以变构抑制或促进配体与第二个原表达结合的配体结合水平; (ii)在配体诱导的构象转换水平上发生,该构象转换发生在两个前体的跨膜结构域之间; (iii)在GPCR相关蛋白复合物中,直接在与GPCR相互作用的蛋白水平上,或在复合物的其他下游水平上。这些不同级别的互通会在GPCR二聚体中引入不对称性,其中每个Protomer都完成其特定任务。在这篇综述中,我们讨论了GPCR的不对称行为如何突出寡聚受体组织的优势并支持GPCR二聚化的功能相关性。

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