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Extensive shape shifting underlies functional versatility of arrestins. [Review]

机译:广泛的形变是抑制蛋白功能广泛的基础。 [评论]

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摘要

Among four vertebrate arrestins, only two are ubiquitously expressed. Arrestins specifically bind active phosphorylated G protein-coupled receptors (GPCRs), thereby precluding further G protein activation. Recent discoveries suggest that the formation of the arrestin-receptor complex initiates the second round of signaling with comparable biological importance. Despite having virtually no recognizable sequence motifs known to mediate protein-protein interactions, arrestins bind a surprising variety of signaling proteins with mind-boggling range of functional consequences. High conformational flexibility allows arrestins to show many distinct 'faces' to the world, which allows these relatively small ~45kDa proteins to bind various partners under different physiological conditions, organizing multi-protein signaling complexes and localizing them to distinct subcellular compartments
机译:在四个脊椎动物抑制蛋白中,只有两个被普遍表达。抑制蛋白特异性结合活性磷酸化的G蛋白偶联受体(GPCR),从而排除了进一步的G蛋白活化。最近的发现表明,抑制素-受体复合物的形成引发了具有可比生物学重要性的第二轮信号传导。尽管实际上没有已知可识别的序列基序介导蛋白质-蛋白质相互作用,但抑制蛋白结合令人惊讶的各种信号蛋白,其功能后果令人难以置信。高度的构象灵活性使抑制蛋白向世界展示许多独特的“面孔”,这使这些相对较小的〜45kDa蛋白质可以在不同的生理条件下结合各种伴侣,从而组织多蛋白质信号复合物并将其定位于不同的亚细胞区室

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