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Coiled-coil nanomechanics and uncoiling and unfolding of the superhelix and alpha-helices of myosin

机译:螺旋线圈的纳米力学和肌球蛋白的超螺旋和α螺旋的展开和展开

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The nanomechanical properties of the coiled-coils of myosin are fundamentally important in understanding muscle assembly and contraction. Force spectra of single molecules of double-headed myosin, single-headed myosin, and coiled-coil tail fragments were acquired with an atomic force microscope and displayed characteristic triphasic force-distance responses to stretch: a rise phase (R) and a plateau phase (P) and an exponential phase (E). The R and P phases arise mainly from the stretching of the coiled-coils, with the hinge region being the main contributor to the rise phase at low force. Only the E phase was analyzable by the worm-like chain model of polymer elasticity. Restrained molecular mechanics simulations on an existing x-ray structure of scallop S2 yielded force spectra with either two or three phases, depending on the mode of stretch. It revealed that coiled-coil chains separate completely near the end of the P phase and the stretching of the unfolded chains gives rise to the E phase. Extensive conformational searching yielded a P phase force near 40 pN that agreed well with the experimental value. We suggest that the flexible and elastic S2 region, particularly the hinge region, may undergo force-induced unfolding and extend reversibly during actomyosin powerstroke.
机译:肌球蛋白的卷曲螺旋的纳米力学性质对于理解肌肉的组装和收缩至关重要。用原子力显微镜获取双头肌球蛋白,单头肌球蛋白和卷曲螺旋尾部片段的单分子力谱,并显示出对拉伸的特征性三相力-距离响应:上升阶段(R)和平稳阶段(P)和指数阶段(E)。 R和P相主要来自盘绕线圈的拉伸,而铰链区是低力时上升相的主要贡献者。通过聚合物弹性的蠕虫状链模型只能分析E相。在扇贝S2的现有x射线结构上进行的受约束的分子力学模拟产生了具有两个或三个相的力谱,具体取决于拉伸方式。结果表明,卷曲螺旋链在P相即将结束时完全分离,未折叠链的拉伸形成E相。广泛的构象搜索产生了一个接近40 pN的P相力,与实验值非常吻合。我们建议,柔性和弹性S2区,特别是铰链区,在肌动球蛋白的中风过程中可能经历力诱导的展开并可逆地延伸。

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