Department of Bioengineering, University of California, Berkeley, USA.
Biophys J. 2011 Jan 19;100(2):332-40. doi: 10.1016/j.bpj.2010.11.024.
Focal adhesions are critical to a number of cellular processes that involve mechanotransduction and mechanical interaction with the cellular environment. The growth and strengthening of these focal adhesions is dependent on the interaction between talin and vinculin. This study investigates said interaction and how vinculin activation influences it. Using molecular dynamics, the interaction between talin's vinculin binding site (VBS) and vinculin's domain 1 (D1) is simulated both before and after vinculin activation. The simulations of VBS binding to vinculin before activation suggest the proximity of the vinculin tail to D1 prevents helical movement in D1 and thus prevents binding of VBS. In contrast, interaction of VBS with activated vinculin shows the possibility of complete VBS insertion into D1. In the simulations of both activated and autoinhibited vinculin where VBS fails to fully bind, VBS demonstrates significant hydrophobic interaction with surface residues in D1. These interactions link VBS to D1 even without its proper insertion into the hydrophobic core. Together these simulations suggest VBS binds to vinculin with the following mechanism: 1), VBS links to D1 via surface hydrophobic interactions; 2), vinculin undergoes activation and D1 is moved away from the vinculin tail; 3), helices in D1 undergo conformational change to allow VBS binding; and 4), VBS inserts itself into the hydrophobic core of D1.
黏着斑是许多细胞过程的关键,这些过程涉及机械转导和与细胞环境的机械相互作用。这些黏着斑的生长和增强取决于talin 和 vinculin 之间的相互作用。本研究调查了这种相互作用以及 vinculin 激活如何影响它。使用分子动力学,模拟了 talin 的 vinculin 结合位点(VBS)和 vinculin 的结构域 1(D1)在 vinculin 激活前后的相互作用。在激活前 VBS 与 vinculin 结合的模拟表明,vinculin 尾巴与 D1 的接近阻止了 D1 中的螺旋运动,从而阻止了 VBS 的结合。相比之下,VBS 与激活的 vinculin 的相互作用表明 VBS 完全插入 D1 的可能性。在模拟激活和自动抑制的 vinculin 中,VBS 未能完全结合,VBS 与 D1 表面残基表现出显著的疏水性相互作用。这些相互作用将 VBS 与 D1 联系在一起,即使没有将其正确插入疏水性核心。这些模拟共同表明,VBS 与 vinculin 的结合机制如下:1),VBS 通过表面疏水性相互作用与 D1 相连;2),vinculin 发生激活,D1 远离 vinculin 尾巴;3),D1 中的螺旋发生构象变化,允许 VBS 结合;4),VBS 将自身插入 D1 的疏水性核心。