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.
Two modes of integrin activation form a binary molecular switch in adhesion maturation.
整合素激活的两种模式在粘附成熟过程中形成二元分子开关
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作者:Lee Ho-Sup, Anekal Praju, Lim Chinten James, Liu Chi-Chao, Ginsberg Mark H
| 期刊: | Molecular Biology of the Cell | 影响因子: | 2.700 |
| 时间: | 2013 | 起止号: | 2013 May;24(9):1354-62 |
| doi: | 10.1091/mbc.E12-09-0695 | ||
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