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首页> 外文期刊>Journal of Molecular Biology >Crossbridge and tropomyosin positions observed in native, interacting thick and thin filaments.
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Crossbridge and tropomyosin positions observed in native, interacting thick and thin filaments.

机译:在天然的,相互作用的粗细丝中观察到过桥蛋白和原肌球蛋白的位置。

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摘要

Tropomyosin movements on thin filaments are thought to sterically regulate muscle contraction, but have not been visualized during active filament sliding. In addition, although 3-D visualization of myosin crossbridges has been possible in rigor, it has been difficult for thick filaments actively interacting with thin filaments. In the current study, using three-dimensional reconstruction of electron micrographs of interacting filaments, we have been able to resolve not only tropomyosin, but also the docking sites for weak and strongly bound crossbridges on thin filaments. In relaxing conditions, tropomyosin was observed on the outer domain of actin, and thin filament interactions with thick filaments were rare. In contracting conditions, tropomyosin had moved to the inner domain of actin, and extra density, reflecting weakly bound, cycling myosin heads, was also detected, on the extreme periphery of actin. In rigor conditions, tropomyosin had moved further on to the inner domain of actin, and strongly bound myosin heads were now observed over the junction of the inner and outer domains. We conclude (1) that tropomyosin movements consistent with the steric model of muscle contraction occur in interacting thick and thin filaments, (2) that myosin-induced movement of tropomyosin in activated filaments requires strongly bound crossbridges, and (3) that crossbridges are bound to the periphery of actin, at a site distinct from the strong myosin binding site, at an early stage of the crossbridge cycle. Copyright 2001 Academic Press.
机译:细丝上的肌动球蛋白运动被认为在空间上调节肌肉的收缩,但是在主动的丝线滑动过程中并未显现出来。另外,尽管严格地可以进行肌球蛋白横桥的3D可视化,但是对于厚的细丝主动地与细的细丝相互作用是困难的。在当前的研究中,使用相互作用的细丝的电子显微照片的三维重建,我们不仅能够解析原肌球蛋白,而且还能解析细丝上弱且牢固结合的交叉桥的停靠位。在松弛条件下,在肌动蛋白的外域观察到原肌球蛋白,稀有细丝与粗细丝的相互作用很少。在收缩条件下,原肌球蛋白已移至肌动蛋白的内部区域,并且在肌动蛋白的最外围还检测到额外的密度,反映了弱结合的循环肌球蛋白头部。在严格的条件下,原肌球蛋白已进一步移动到肌动蛋白的内部结构域,现在在内和外部结构域的交界处观察到牢固结合的肌球蛋白头。我们得出以下结论:(1)与肌肉收缩的空间模型一致的原肌球蛋白运动发生在相互作用的粗细纤维中;(2)肌动蛋白诱导的原肌球蛋白在活化细丝中的运动需要牢固结合的跨桥;(3)结合了跨桥在跨桥循环的早期阶段,在不同于强肌球蛋白结合位点的位点处与肌动蛋白的周边结合。版权所有2001学术出版社。

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