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Structure of Rap1b bound to talin reveals a pathway for triggering integrin activation

机译:Rap1b与塔林蛋白结合的结构揭示了触发整联蛋白激活的途径

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Activation of transmembrane receptor integrin by talin is essential for inducing cell adhesion. However, the pathway that recruits talin to the membrane, which critically controls talin’s action, remains elusive. Membrane-anchored mammalian small GTPase Rap1 is known to bind talin-F0 domain but the binding was shown to be weak and thus hardly studied. Here we show structurally that talin-F0 binds to human Rap1b like canonical Rap1 effectors despite little sequence homology, and disruption of the binding strongly impairs integrin activation, cell adhesion, and cell?spreading. Furthermore, while being weak in conventional binary binding conditions, the Rap1b/talin interaction becomes strong upon attachment of activated Rap1b to vesicular membranes that mimic the agonist-induced microenvironment. These data identify a crucial Rap1-mediated membrane-targeting mechanism for talin to activate integrin. They further broadly caution the analyses of weak protein–protein interactions that may be pivotal for function but neglected in the absence of specific cellular microenvironments.
机译:塔林激活跨膜受体整联蛋白对于诱导细胞粘附至关重要。但是,将塔林素募集到膜上的途径(关键控制塔林的作用)仍然难以捉摸。已知膜锚定的哺乳动物小GTPase Rap1结合塔林蛋白-F0结构域,但这种结合很弱,因此很少进行研究。在这里,我们在结构上显示,尽管很少有序列同源性,但塔林蛋白-F0像典型的Rap1效应子一样与人Rap1b结合,结合的破坏强烈削弱了整联蛋白的激活,细胞粘附和细胞扩散。此外,尽管在常规的二元结合条件下较弱,但Rap1b /塔林相互作用在激活的Rap1b附着于模拟激动剂诱导的微环境的囊泡膜上时变得很强。这些数据确定了塔林激活整联蛋白的关键Rap1介导的膜靶向机制。他们进一步广泛地警告说,弱蛋白之间相互作用的分析可能对功能至关重要,但在缺乏特定细胞微环境的情况下却被忽略。

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