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在放松的哺乳动物骨骼肌中,粗肌丝结构对温度和肌丝间间距的依赖性。

Dependence of thick filament structure in relaxed mammalian skeletal muscle on temperature and interfilament spacing.

机构信息

PhysioLab, University of Florence, Florence, Italy.

Randall Centre for Cell and Molecular Biophysics, King's College London, London, UK.

出版信息

J Gen Physiol. 2021 Mar 1;153(3). doi: 10.1085/jgp.202012713.

Abstract

Contraction of skeletal muscle is regulated by structural changes in both actin-containing thin filaments and myosin-containing thick filaments, but myosin-based regulation is unlikely to be preserved after thick filament isolation, and its structural basis remains poorly characterized. Here, we describe the periodic features of the thick filament structure in situ by high-resolution small-angle x-ray diffraction and interference. We used both relaxed demembranated fibers and resting intact muscle preparations to assess whether thick filament regulation is preserved in demembranated fibers, which have been widely used for previous studies. We show that the thick filaments in both preparations exhibit two closely spaced axial periodicities, 43.1 nm and 45.5 nm, at near-physiological temperature. The shorter periodicity matches that of the myosin helix, and x-ray interference between the two arrays of myosin in the bipolar filament shows that all zones of the filament follow this periodicity. The 45.5-nm repeat has no helical component and originates from myosin layers closer to the filament midpoint associated with the titin super-repeat in that region. Cooling relaxed or resting muscle, which partially mimics the effects of calcium activation on thick filament structure, disrupts the helical order of the myosin motors, and they move out from the filament backbone. Compression of the filament lattice of demembranated fibers by 5% Dextran, which restores interfilament spacing to that in intact muscle, stabilizes the higher-temperature structure. The axial periodicity of the filament backbone increases on cooling, but in lattice-compressed fibers the periodicity of the myosin heads does not follow the extension of the backbone. Thick filament structure in lattice-compressed demembranated fibers at near-physiological temperature is similar to that in intact resting muscle, suggesting that the native structure of the thick filament is largely preserved after demembranation in these conditions, although not in the conditions used for most previous studies with this preparation.

摘要

骨骼肌的收缩受到含肌动蛋白的细丝和含肌球蛋白的粗丝结构变化的调节,但在粗丝分离后,基于肌球蛋白的调节不太可能被保留,其结构基础仍知之甚少。在这里,我们通过高分辨率小角 X 射线衍射和干涉原位描述了粗丝结构的周期性特征。我们使用了松弛去膜纤维和休息的完整肌肉制剂来评估去膜纤维中是否保留了粗丝调节,去膜纤维已被广泛用于以前的研究。我们表明,在接近生理温度下,两种制剂中的粗丝都表现出两个紧密间隔的轴向周期性,分别为 43.1nm 和 45.5nm。较短的周期性与肌球蛋白螺旋匹配,并且在双极丝中两个肌球蛋白阵列之间的 X 射线干涉表明,细丝的所有区域都遵循这个周期性。45.5nm 的重复没有螺旋成分,它源于与该区域内肌联蛋白超重复相关的更靠近细丝中点的肌球蛋白层。冷却松弛或休息的肌肉,部分模拟了钙离子对粗丝结构的激活作用,破坏了肌球蛋白马达的螺旋有序性,它们从细丝主干中移出。用 5%葡聚糖压缩去膜纤维的晶格,将纤维间的间距恢复到完整肌肉中的间距,稳定了较高温度的结构。在冷却时,细丝晶格的轴向周期性增加,但在晶格压缩的纤维中,肌球蛋白头部的周期性不跟随主干的延伸。在接近生理温度下,晶格压缩的去膜纤维中的粗丝结构类似于完整休息的肌肉,这表明在这些条件下去膜后,粗丝的天然结构在很大程度上得以保留,尽管在以前使用这种制剂的大多数研究中并非如此。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3793/7802359/c2fc09a33641/JGP_202012713_Fig1.jpg

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