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PNAS Plus: Myosin light chain phosphorylation enhances contraction of heart muscle via structural changes in both thick and thin filaments

机译:PNAS Plus:肌球蛋白轻链磷酸化通过细丝和细丝的结构变化增强心肌收缩

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摘要

Contraction of heart muscle is triggered by calcium binding to the actin-containing thin filaments but modulated by structural changes in the myosin-containing thick filaments. We used phosphorylation of the myosin regulatory light chain (cRLC) by the cardiac isoform of its specific kinase to elucidate mechanisms of thick filament-mediated contractile regulation in demembranated trabeculae from the rat right ventricle. cRLC phosphorylation enhanced active force and its calcium sensitivity and altered thick filament structure as reported by bifunctional rhodamine probes on the cRLC: the myosin head domains became more perpendicular to the filament axis. The effects of cRLC phosphorylation on thick filament structure and its calcium sensitivity were mimicked by increasing sarcomere length or by deleting the N terminus of the cRLC. Changes in thick filament structure were highly cooperative with respect to either calcium concentration or extent of cRLC phosphorylation. Probes on unphosphorylated myosin heads reported similar structural changes when neighboring heads were phosphorylated, directly demonstrating signaling between myosin heads. Moreover probes on troponin showed that calcium sensitization by cRLC phosphorylation is mediated by the thin filament, revealing a signaling pathway between thick and thin filaments that is still present when active force is blocked by Blebbistatin. These results show that coordinated and cooperative structural changes in the thick and thin filaments are fundamental to the physiological regulation of contractility in the heart. This integrated dual-filament concept of contractile regulation may aid understanding of functional effects of mutations in the protein components of both filaments associated with heart disease.
机译:钙离子与肌动蛋白的细丝结合会触发心肌收缩,但肌球蛋白的细丝的结构变化会调节心肌的收缩。我们通过其特异性激酶的心脏同种型使用了肌球蛋白调节性轻链(cRLC)的磷酸化,阐明了来自大鼠右心室去膜小梁中厚丝介导的收缩调节的机制。如cRLC上的双功能罗丹明探针所报道的,cRLC磷酸化增强了活性,增强了钙敏感性,并改变了粗丝结构:肌球蛋白的头部结构域与丝轴更垂直。通过增加肌节长度或删除cRLC的N末端,可以模拟cRLC磷酸化对粗细丝结构及其钙敏感性的影响。就钙浓度或cRLC磷酸化程度而言,粗丝结构的变化高度协同。未磷酸化的肌球蛋白头的探针报告说,当相邻的头被磷酸化时,结构类似的变化,直接表明了肌球蛋白头之间的信号传递。此外,肌钙蛋白的探针显示,cRLC磷酸化引起的钙敏化作用是由细丝介导的,揭示了细丝与细丝之间的信号传导途径,当活性力被布雷贝汀抑制时仍存在。这些结果表明,粗细丝的协调和协作的结构变化是心脏收缩力的生理调节的基础。这种整合的双丝收缩调节概念可以帮助理解与心脏病相关的两条丝的蛋白质成分中突变的功能作用。

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