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A Highlights from MBoC Selection: Two modes of integrin activation form a binary molecular switch in adhesion maturation

机译:MBoC选择的亮点:整合素激活的两种模式在粘附成熟中形成二元分子转换

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Talin-mediated integrin activation drives integrin-based adhesions. Here we examine the roles of two proteins that induce talin–integrin interactions—vinculin and Rap1-GTP-interacting adaptor molecule (RIAM)—in the formation and maturation of integrin-based adhesions. RIAM-containing adhesions are primarily in the lamellipodium; RIAM is subsequently reduced in mature focal adhesions due to direct competition with vinculin for talin-binding sites. We show that vinculin binding to talin induces Rap1-independent association of talin with integrins and resulting integrin activation, in sharp contrast to Rap1-dependent RIAM-induced activation. Vinculin stabilizes adhesions, increasing their ability to transmit force, whereas RIAM played a critical role in lamellipodial protrusion. Thus displacement of RIAM by vinculin acts as a molecular switch that mediates the transition of integrin-based adhesions from drivers of lamellipodial protrusion to stable, force-bearing adhesions. Consequently changes in the abundance of two multiprotein modules within maturing adhesions, one regulated by Rap1 and one by tension, result in the temporal evolution of adhesion functions.
机译:塔林介导的整合素活化作用驱动基于整合素的粘附。在这里,我们研究了两种诱导塔林蛋白-整联蛋白相互作用的蛋白,即vinculin和与Rap1-GTP相互作用的衔接分子(RIAM)在基于整联蛋白的黏附形成和成熟中的作用。含RIAM的黏附物主要存在于lalamlipodium中。由于与新蛋白直接竞争塔林结合位点,RIAM随后减少了成熟的粘连。我们显示纽蛋白结合到塔林蛋白诱导塔林与整联蛋白和导致整联蛋白活化的Rap1独立的协会,与Rap1依赖性RIAM诱导的活化形成鲜明对比。 Vinculin稳定粘连,增加其传递力的能力,而RIAM在层状脂质体伸出中起关键作用。因此,用纽蛋白代替RIAM的作用是作为分子开关,介导基于整合素的黏附从片状脂质体突起的驱动器过渡到稳定的受力黏附。因此,在成熟的粘连中两个多蛋白模块的丰度变化(一个受Rap1调节,一个受张力调节)导致粘连功能随时间变化。

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