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Structural basis for drug-induced allosteric changes to human β-cardiac myosin motor activity

机译:药物诱导的人β-心肌肌球蛋白运动活性的变构变化的结构基础

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摘要

Omecamtiv Mecarbil (OM) is a small molecule allosteric effector of cardiac myosin that is in clinical trials for treatment of systolic heart failure. A detailed kinetic analysis of cardiac myosin has shown that the drug accelerates phosphate release by shifting the equilibrium of the hydrolysis step towards products, leading to a faster transition from weak to strong actin-bound states. The structure of the human β-cardiac motor domain (cMD) with OM bound reveals a single OM-binding site nestled in a narrow cleft separating two domains of the human cMD where it interacts with the key residues that couple lever arm movement to the nucleotide state. In addition, OM induces allosteric changes in three strands of the β-sheet that provides the communication link between the actin-binding interface and the nucleotide pocket. The OM-binding interactions and allosteric changes form the structural basis for the kinetic and mechanical tuning of cardiac myosin.
机译:Omecamtiv Mecarbil(OM)是心脏肌球蛋白的小分子变构效应物,正在临床上用于治疗收缩性心力衰竭。心脏肌球蛋白的详细动力学分析表明,该药物通过将水解步骤的平衡向产物转移,从而加速了磷酸盐的释放,从而导致从弱肌动蛋白结合态快速转变为强肌动蛋白结合态。带有OM结合的人β心脏运动域(cMD)的结构揭示了一个OM结合位点,该位点位于狭窄的裂口中,将人cMD的两个域隔开,在此处它与将杠杆臂运动耦合至核苷酸的关键残基相互作用州。另外,OM诱导β-折叠的三链的变构变化,这提供了肌动蛋白结合界面和核苷酸口袋之间的通讯联系。 OM-结合相互作用和变构变化形成了心脏肌球蛋白动力学和机械调节的结构基础。

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