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Tropomyosin dynamics

机译:肌球蛋白动力学

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摘要

Tropomyosin is a two chained alpha-helical coiled coil protein that binds actin filaments and interacts with various actin binding proteins. Tropomyosin function depends on its ability to move to distinct locations on the surface of actin in response to the binding of different thin filament effectors. Tropomyosin dynamics plays an important role in these fluctuating interactions with actin and is thought to be fundamental to many of its biological activities. For example tropomyosin concerted movement on the surface of actin triggered by Ca2+ binding to troponin or myosin head binding to actin has been argued to be key to the cooperative allosteric regulation of muscle contraction. These large-scale motions are affected by tropomyosin internal dynamics and mechanical properties. Tropomyosin internal dynamics corresponding to smaller and more localised structural fluctuations are increasingly recognised to play an important role in its function. A thorough understanding of the coupling between local and global structural fluctuations in tropomyosin is required to understand how time dependent structural fluctuations in tropomyosin contribute to the overall thin filament dynamics and dictate their various biological activities.
机译:Tropomyosin是一条两链的α-螺旋卷曲螺旋蛋白,结合肌动蛋白丝并与各种肌动蛋白结合蛋白相互作用。肌球蛋白的功能取决于其响应不同细丝效应子结合而移动至肌动蛋白表面不同位置的能力。肌动蛋白动力学在与肌动蛋白的这些波动的相互作用中起着重要作用,被认为是其许多生物学活动的基础。例如,有人认为原肌球蛋白在肌动蛋白表面上的协同运动是由Ca2 +与肌钙蛋白的结合或肌球蛋白的头部与肌动蛋白的结合触发的,这是肌肉收缩的协同变构调节的关键。这些大规模运动受到原肌球蛋白内部动力学和机械性能的影响。人们越来越认识到与更小和更局限的结构波动相对应的肌红蛋白内部动力学在其功能中起着重要作用。需要透彻了解原肌球蛋白的局部和整体结构波动之间的耦合,以了解原肌球蛋白的时间依赖性结构波动如何影响总体细丝动力学并决定其各种生物学活性。

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