首页> 外文期刊>Journal of Molecular Biology >Axial dispositions and conformations of myosin crossbridges along thick filaments in relaxed and contracting states of vertebrate striated muscles by X-ray fiber diffraction.
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Axial dispositions and conformations of myosin crossbridges along thick filaments in relaxed and contracting states of vertebrate striated muscles by X-ray fiber diffraction.

机译:X射线纤维衍射在脊椎动物横纹肌松弛和收缩状态下沿粗丝的肌球蛋白横桥的轴向排列和构象。

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摘要

X-ray diffraction patterns from live vertebrate striated muscles were analyzed to elucidate the detailed structural models of the myosin crown arrangement and the axial disposition of two-headed myosin crossbridges along the thick filaments in the relaxed and contracting states. The modeling studies were based upon the previous notion that individual myosin filaments had a mixed structure with two regions, a "regular" and a "perturbed". In the relaxed state the distributions and sizes of the regular and perturbed regions on myosin filaments, each having its own axial periodicity for the arrangement of crossbridge crowns within the basic period, were similar to those reported previously. A new finding was that in the contracting state, this mixed structure was maintained but the length of each region, the periodicities of the crowns and the axial disposition of two heads of a crossbridge were altered. The perturbed regions of the crossbridge repeat shifted towards the Z-bands in the sarcomere without changing the lengths found in the relaxed state, but in which the intervals between three successive crowns within the basic period became closer to the regular 14.5-nm repeat in the contracting state. In high resolution modeling for a myosin head, the two heads of a crossbridge were axially tilted in opposite directions along the three-fold helical tracks of myosin filaments and their axial orientations were different from each other in perturbed and regular regions in both states. Under relaxing conditions, one head of a double-headed crossbridge pair appeared to be in close proximity to another head in a pair at the adjacent crown level in the axial direction in the regular region. In the perturbed region this contact between heads occurred only on the narrower inter-crown levels. During contraction, one head of a crossbridge oriented more perpendicular to the fiber axis and the partner head flared axially. Several factors that significantly influence the intensities of the myosin based-meridional reflections and their relative contributions are discussed.
机译:分析了来自活体脊椎动物横纹肌的X射线衍射图,阐明了肌球蛋白冠排列的详细结构模型,以及在松弛和收缩状态下沿着粗细丝的双头肌球蛋白横桥的轴向布置。建模研究基于先前的观点,即单个肌球蛋白丝具有混合结构,具有两个区域,即“常规”和“扰动”。在松弛状态下,肌球蛋白丝上规则区域和扰动区域的分布和大小与先前报道的相似,每个区域在横穿冠状物的基本周期内都有自己的轴向周期性。一个新的发现是,在收缩状态下,这种混合结构得以保持,但每个区域的长度,冠的周期性和横桥的两个头部的轴向布置都发生了变化。横桥重复区的扰动区域在不改变松弛状态下发现的长度的情况下,向肌节中的Z带移动,但在基本周期内三个连续冠之间的间隔变得更接近于规则的14.5 nm重复区。收缩状态。在肌球蛋白头的高分辨率建模中,跨桥的两个头沿着肌球蛋白丝的三重螺旋轨迹沿相反的方向轴向倾斜,并且在这两种状态下,其扰动和规则区域的轴向方向彼此不同。在放松条件下,双头横桥对中的一个头在规则区域中在轴向上的相邻胎冠高度上似乎与该对中的另一个头非常接近。在受扰区域中,头部之间的这种接触仅发生在较窄的冠间水平上。在收缩过程中,横桥的一个头部更垂直于纤维轴,而配对头部则轴向张开。讨论了显着影响基于肌球蛋白的子午反射强度及其相对贡献的几个因素。

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