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Ca2+-induced movement of tropomyosin on native cardiac thin filaments revealed by cryoelectron microscopy

机译:Ca2 +诱导原肌细丝上原肌球蛋白运动的低温电子显微镜观察

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摘要

Muscle contraction relies on the interaction of myosin motors with F-actin, which is regulated through a translocation of tropomyosin by the troponin complex in response to Ca2+. The current model of muscle regulation holds that at relaxing (low-Ca2+) conditions tropomyosin blocks myosin binding sites on F-actin, whereas at activating (high-Ca2+) conditions tropomyosin translocation only partially exposes myosin binding sites on F-actin so that binding of rigor myosin is required to fully activate the thin filament (TF). Here we used a single-particle approach to helical reconstruction of frozen hydrated native cardiac TFs under relaxing and activating conditions to reveal the azimuthal movement of the tropomyosin on the surface of the native cardiac TF upon Ca2+ activation. We demonstrate that at either relaxing or activating conditions tropomyosin is not constrained in one structural state, but rather is distributed between three structural positions on the surface of the TF. We show that two of these tropomyosin positions restrain actomyosin interactions, whereas in the third position, which is significantly enhanced at high Ca2+, tropomyosin does not block myosin binding sites on F-actin. Our data provide a structural framework for the enhanced activation of the cardiac TF over the skeletal TF by Ca2+ and lead to a mechanistic model for the regulation of the cardiac TF.
机译:肌肉收缩依赖于肌球蛋白运动蛋白与F-肌动蛋白的相互作用,肌钙蛋白复合物响应Ca 2 + 通过原肌球蛋白的移位来调节肌球蛋白运动。当前的肌肉调节模型认为,在松弛(低Ca 2 + )条件下,原肌球蛋白会阻断F-肌动蛋白上的肌球蛋白结合位点,而在激活时(高Ca 2 + >)条件原肌球蛋白易位仅部分暴露F-肌动蛋白上的肌球蛋白结合位点,因此需要严格的肌球蛋白结合才能完全激活细丝(TF)。在这里,我们使用单粒子方法在松弛和激活条件下对冷冻的水合天然心脏TF进行螺旋重建,以揭示在Ca 2 + 活化后原肌TF表面原肌球蛋白的方位角运动。 。我们证明,在松弛或激活条件下,原肌球蛋白并不局限于一种结构状态,而是分布在TF表面的三个结构位置之间。我们显示,这些原肌球蛋白中的两个位置抑制了肌动球蛋白相互作用,而在第三个位置(在高Ca 2 + 时显着增强),原肌球蛋白并没有阻断肌动蛋白在F-肌动蛋白上的结合位点。我们的数据为通过Ca 2 + 增强骨骼肌TF激活心脏TF提供了结构框架,并为心脏TF的调控提供了一种机械模型。

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