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The familial hypertrophic cardiomyopathy-associated myosin mutation R403Q accelerates tension generation and relaxation of human cardiac myofibrils

机译:家族性肥厚性心肌病相关的肌球蛋白突变R403Q加速人心肌肌原纤维的张力产生和松弛

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摘要

The R403Q mutation in β-myosin heavy chain was the first mutation to be identified as responsible for familial hypertrophic cardiomyopathy (FHC). In spite of extensive work on the functional sequelae of this mutation, the mechanism by which the mutant protein causes the disease has not been definitely identified. Here we directly compare contraction and relaxation mechanics of single myofibrils from left ventricular samples of one patient carrying the R403Q mutation to those from a healthy control heart. Tension generation and relaxation following sudden increase and decrease in [Ca2+] were much faster in the R403Q myofibrils with relaxation rates being the most affected parameters. The results show that the R403Q mutation leads to an apparent gain of protein function but a greater energetic cost of tension generation. Increased energy cost of tension generation may be central to the FHC disease process, help explain some unresolved clinical observations, and carry significant therapeutic implications.
机译:β-肌球蛋白重链中的R403Q突变是第一个被鉴定为导致家族性肥厚性心肌病(FHC)的突变。尽管对该突变的功能后遗症进行了广泛的研究,但仍不确定突变蛋白引起该疾病的机制。在这里,我们直接比较一名携带R403Q突变的患者的左心室样本与健康对照心脏的单个肌原纤维的收缩和舒张机制。在R403Q肌原纤维中[Ca 2 + ]突然升高和降低后,张力的产生和松弛要快得多,其中松弛率是受影响最大的参数。结果表明,R403Q突变导致明显的蛋白质功能获得,但产生张力的能量成本更高。产生张力的能量成本增加可能是FHC疾病过程的核心,有助于解释一些尚未解决的临床观察结果,并具有重要的治疗意义。

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