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PNAS Plus: Skip residues modulate the structural properties of the myosin rod and guide thick filament assembly

机译:PNAS Plus:跳过残留物可调节肌球蛋白棒的结构特性并引导粗细丝组件

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摘要

The rod of sarcomeric myosins directs thick filament assembly and is characterized by the insertion of four skip residues that introduce discontinuities in the coiled-coil heptad repeats. We report here that the regions surrounding the first three skip residues share high structural similarity despite their low sequence homology. Near each of these skip residues, the coiled-coil transitions to a nonclose-packed structure inducing local relaxation of the superhelical pitch. Moreover, molecular dynamics suggest that these distorted regions can assume different conformationally stable states. In contrast, the last skip residue region constitutes a true molecular hinge, providing C-terminal rod flexibility. Assembly of myosin with mutated skip residues in cardiomyocytes shows that the functional importance of each skip residue is associated with rod position and reveals the unique role of the molecular hinge in promoting myosin antiparallel packing. By defining the biophysical properties of the rod, the structures and molecular dynamic calculations presented here provide insight into thick filament formation, and highlight the structural differences occurring between the coiled-coils of myosin and the stereotypical tropomyosin. In addition to extending our knowledge into the conformational and biological properties of coiled-coil discontinuities, the molecular characterization of the four myosin skip residues also provides a guide to modeling the effects of rod mutations causing cardiac and skeletal myopathies.
机译:肌节肌肌球蛋白棒指导粗丝装配,其特征是插入了四个跳跃残基,这些残基在螺旋卷曲七肽重复序列中引入了不连续性。我们在这里报告说,尽管前者的序列同源性低,但前三个跳跃残基周围的区域共享高结构相似性。在这些跳过残渣的每一个附近,盘绕线圈过渡到非紧密堆积的结构,从而引起超螺旋螺距的局部松弛。此外,分子动力学表明这些扭曲的区域可以采取不同的构象稳定状态。相反,最后一个跳过残基区域构成了真正的分子铰链,提供了C端杆的柔性。心肌细胞中具有突变的跳跃残基的肌球蛋白的组装表明,每个跳跃残基的功能重要性与杆的位置有关,并揭示了分子铰链在促进肌球蛋白反平行包装中的独特作用。通过定义棒的生物物理特性,此处介绍的结构和分子动力学计算可洞察粗丝的形成,并突出显示肌球蛋白的卷曲螺旋和定型原肌球蛋白之间的结构差异。除了将我们的知识扩展到盘绕不连续的构象和生物学特性外,四个肌球蛋白跳跃残基的分子特征还为建模导致心脏和骨骼肌病的杆突变的影响提供了指导。

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