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Monomeric and Dimeric Conformation of the Vinculin Tail Five-Helix Bundle in Solution Studied by EPR Spectroscopy

机译:通过EPR光谱研究溶液中的Vinculin尾五螺旋束的单体和二聚体构象

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摘要

The cytoskeletal adaptor protein vinculin plays an important role in the control of cell adhesion and migration, linking the actin cytoskeleton to adhesion receptor complexes in cell adhesion sites. The conformation of the vinculin tail dimer, which is crucial for protein function, was analyzed using site-directed spin labeling in electron paramagnetic resonance spectroscopy. Interspin distances for a set of six singly and four doubly spin-labeled mutants of the tail domain of vinculin were determined and used as constraints for modeling of the vinculin tail dimer. A comparison of the results obtained by molecular dynamic simulations and a rotamer library approach reveals that the crystal structure of the vinculin tail monomer is essentially preserved in aqueous solution. The orientation of monomers within the dimer observed previously by x-ray crystallography agrees with the solution electron paramagnetic resonance data. Furthermore, the distance between positions 1033 is shown to increase by >3 nm upon interaction of the vinculin tail domain with F-actin.
机译:细胞骨架衔接蛋白蛋白纽蛋白在控制细胞黏附和迁移中起重要作用,将肌动蛋白细胞骨架与细胞黏附部位的黏附受体复合物联系起来。在蛋白质顺磁共振波谱中使用定点自旋标记分析了对蛋白质功能至关重要的纽蛋白尾巴二聚体的构象。确定了一组六个单链蛋白和四个双链蛋白标记的新蛋白尾区的自旋间距离,并将其用作对新蛋白尾二聚体建模的约束。通过分子动力学模拟和旋转异构体库方法获得的结果的比较表明,纽扣素尾部单体的晶体结构基本上保留在水溶液中。先前通过X射线晶体学观察到的二聚体中单体的取向与溶液电子顺磁共振数据一致。此外,显示了纽扣素尾部结构域与F-肌动蛋白相互作用后,位置1033之间的距离增加了> 3 nm。

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