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How and why do GPCRs dimerize?

机译:GPCR如何以及为什么二聚?

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摘要

Dimerization is fairly common in the G-protein-coupled receptor (GPCR) superfamily. First attempts to rationalize this phenomenon gave rise to an idea that two receptors in a dimer could be necessary to bind a single molecule of G protein or arrestin. Although GPCRs, G proteins and arrestins were crystallized only in their inactive conformations (in which they do not interact), the structures appeared temptingly compatible with this beautiful model. However, it did not survive the rigors of experimental testing: several recent studies unambiguously demonstrated that one receptor molecule is sufficient to activate a G protein and bind arrestin. Thus, to figure out the biological role of receptor self-association we must focus on other functions of GPCRs at different stages of their functional cycle.
机译:在G蛋白偶联受体(GPCR)超家族中,二聚化相当普遍。首先试图使这种现象合理化的想法是,可能需要二聚体中的两个受体来结合单个分子的G蛋白或抑制蛋白。尽管GPCR,G蛋白和抑制蛋白仅以它们的非活性构象(它们不相互作用)结晶,但该结构似乎诱人地与这个美丽的模型相容。但是,它不能经受严格的实验测试:最近的一些研究明确地表明,一个受体分子足以激活G蛋白并结合抑制蛋白。因此,要弄清受体自缔合的生物学作用,我们必须专注于GPCR在其功能周期不同阶段的其他功能。

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