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Sarcomere-length dependence of myosin filament structure in skeletal muscle fibres of the frog

机译:青蛙骨骼肌纤维中肌球蛋白丝结构的肌节长度依赖性

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X-ray diffraction patterns were recorded at beamline ID02 of the European Synchrotron Radiation Facility from small bundles of skeletal muscle fibres from Rana esculenta at sarcomere lengths between 2.1 and 3.5 μm at 4°C. The intensities of the X-ray reflections from resting fibres associated with the quasi-helical order of the myosin heads and myosin binding protein C (MyBP-C) decreased in the sarcomere length range 2.6-3.0 μm but were constant outside it, suggesting that an OFF conformation of the thick filament is maintained by an interaction between MyBP-C and the thin filaments. During active isometric contraction the intensity of the M3 reflection from the regular repeat of the myosin heads along the filaments decreased in proportion to the overlap between thick and thin filaments, with no change in its interference fine structure. Thus, myosin heads in the regions of the thick filaments that do not overlap with thin filaments are highly disordered during isometric contraction, in contrast to their quasi-helical order at rest. Heads in the overlap region that belong to two-headed myosin molecules that are fully detached from actin are also highly disordered, in contrast to the detached partners of actin-attached heads. These results provide strong support for the concept of a regulatory structural transition in the thick filament involving changes in both the organisation of the myosin heads on its surface and the axial periodicity of the myosin tails in its backbone, mediated by an interaction between MyBP-C and the thin filaments.
机译:在欧洲同步辐射装置的光束线ID02处,在4°C下以小束长度从2.1到3.5μm的小鞘蛙(Rana esculenta)的骨骼肌纤维束记录了X射线衍射图。在肌节长度2.6-3.0μm范围内,与肌球蛋白头和螺旋肌球蛋白结合蛋白C(MyBP-C)的准螺旋顺序相关的静止纤维的X射线反射强度降低,但在其外部是恒定的,这表明通过MyBP-C和细丝之间的相互作用,可以维持粗丝的OFF构型。在主动等距收缩期间,沿着细丝的肌球蛋白头规则重复重复产生的M3反射强度与粗细丝之间的重叠程度成比例地降低,而其细微干涉结构没有变化。因此,与在静止时的准螺旋顺序相反,在等轴测收缩期间,在不与薄细丝重叠的粗细丝区域中的肌球蛋白头部高度无序。与肌动蛋白连接的头部分离的伴侣相反,重叠区域中属于完全脱离肌动蛋白的两头肌球蛋白分子的头部也高度无序。这些结果为厚丝中调节结构转变的概念提供了有力的支持,该转变涉及MyBP-C之间的相互作用介导的表面肌球蛋白头部的组织变化和骨架中肌球蛋白尾巴的轴向周期性的变化。和细丝。

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