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Rigor-like structures from muscle myosins reveal key mechanical elements in the transduction pathways of this allosteric motor

机译:肌肉肌球蛋白的严谨样结构揭示了这种变构运动的转导途径中的关键机械要素

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Unlike processive cellular motors such as myosin V, whose structure has recently been determined in a "rigor-like" conformation, myosin II from contracting muscle filaments necessarily spends most of its time detached from actin. By using squid and sea scallop sources, however, we have now obtained similar rigor-like atomic structures for muscle myosin heads (S1). The significance of the hallmark closed actin-binding cleft in these crystal structures is supported here by actin/S1-binding studies. These structures reveal how different duty ratios, and hence cellular functions, of the myosin isoforms may be accounted for, in part, on the basis of detailed differences in interdomain contacts. Moreover, the rigor-like position of switch II turns out to be unique for myosin V. The overall arrangements of subdomains in the motor are relatively conserved in each of the known contractile states, and we explore qualitatively the energetics of these states.
机译:与最近被确定为“严谨”构象的肌球蛋白V等过程性细胞马达不同,来自收缩肌丝的肌球蛋白II必须花费大部分时间与肌动蛋白分开。但是,通过使用鱿鱼和海扇贝来源,我们现在已经为肌肉肌球蛋白头(S1)获得了类似的严格的原子结构。肌动蛋白/ S1结合研究证明了这些晶体结构中标志性封闭的肌动蛋白结合裂的重要性。这些结构揭示了如何部分地基于域间接触的详细差异来解释肌球蛋白同工型的不同占空比,以及因此的细胞功能。而且,对于肌球蛋白V而言,开关II的严酷位置是唯一的。在每个已知的收缩状态下,马达中子域的总体排列都相对保守,因此我们定性地探索了这些状态的能量学。

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