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Impact of familial hypertrophic cardiomyopathy-linked mutations in the NH2 terminus of the RLC on β-myosin cross-bridge mechanics

机译:RLC NH2末端家族性肥厚型心肌病相关突变对β-肌球蛋白跨桥力学的影响

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摘要

Familial hypertrophic cardiomyopathy (HCM) is associated with mutations in sarcomeric proteins, including the myosin regulatory light chain (RLC). Here we studied the impact of three HCM mutations located in the NH2 terminus of the RLC on the molecular mechanism of β-myosin heavy chain (MHC) cross-bridge mechanics using the in vitro motility assay. To generate mutant β-myosin, native RLC was depleted from porcine cardiac MHC and reconstituted with mutant (A13T, F18L, and E22K) or wild-type (WT) human cardiac RLC. We characterized the mutant myosin force and motion generation capability in the presence of a frictional load. Compared with WT, all three mutants exhibited reductions in maximal actin filament velocity when tested under low or no frictional load. The actin-activated ATPase showed no significant difference between WT and HCM-mutant-reconstituted myosins. The decrease in velocity has been attributed to a significantly increased duty cycle, as was measured by the dependence of actin sliding velocity on myosin surface density, for all three mutant myosins. These results demonstrate a mutation-induced alteration in acto-myosin interactions that may contribute to the pathogenesis of HCM.
机译:家族性肥厚型心肌病(HCM)与肌节蛋白(包括肌球蛋白调节性轻链(RLC))的突变有关。在这里,我们使用体外运动试验研究了位于RLC NH2末端的三个HCM突变对β-肌球蛋白重链(MHC)跨桥力学的分子机制的影响。为了产生突变体β-肌球蛋白,从猪心脏MHC中耗尽了天然RLC,并用突变体(A13T,F18L和E22K)或野生型(WT)人心脏RLC进行了重组。我们表征了存在摩擦载荷时突变肌球蛋白的力和运动产生能力。与野生型相比,当在低或无摩擦负荷下测试时,所有三个突变体均显示最大肌动蛋白丝速度降低。肌动蛋白激活的ATPase在WT和HCM突变体重构的肌球蛋白之间没有显着差异。速度的下降归因于占空比的显着增加,这是通过对所有三种突变型肌球蛋白而言,肌动蛋白滑动速度对肌球蛋白表面密度的依赖性所测得的。这些结果证明了肌动蛋白-肌球蛋白相互作用中的突变诱导的改变,这可能与HCM的发病机理有关。

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