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Integrative Structural Modelling of the Cardiac Thin Filament: Energetics at the Interface and Conservation Patterns Reveal a Spotlight on Period 2 of Tropomyosin

机译:心脏细丝的整体结构建模:界面和保守模式的能量学揭示了Tropomyosin的第2期

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Cardiomyopathies are a major health problem, with inherited cardiomyopathies, many of which are caused by mutations in genes encoding sarcomeric proteins, constituting an ever-increasing fraction of cases. To begin to study the mechanisms by which these mutations cause disease, we have employed an integrative modelling approach to study the interactions between tropomyosin and actin. Starting from the existing blocked state model, we identified a specific zone on the actin surface which is highly favourable to support tropomyosin sliding from the blocked/closed states to the open state. We then analysed the predicted actin-tropomyosin interface regions for the three states. Each quasi-repeat of tropomyosin was studied for its interaction strength and evolutionary conservation to focus on smaller surface zones. Finally, we show that the distribution of the known cardiomyopathy mutations of α-tropomyosin is consistent with our model. This analysis provides structural insights into the possible mode of interactions between tropomyosin and actin in the open state for the first time.
机译:心肌病是一个主要的健康问题,遗传性心肌病很多是由编码肌节蛋白的基因突变引起的,占病例的比例越来越高。为了开始研究这些突变引起疾病的机制,我们采用了一种综合建模方法来研究原肌球蛋白和肌动蛋白之间的相互作用。从现有的阻塞状态模型开始,我们在肌动蛋白表面上确定了一个特定区域,该区域非常有利于支持原肌球蛋白从阻塞/闭合状态滑向开放状态。然后,我们分析了三种状态的预测的肌动蛋白-原肌球蛋白界面区域。研究了原肌球蛋白的每个准重复序列的相互作用强度和进化保守性,以集中于较小的表面区域。最后,我们证明了已知的α-原肌球蛋白心肌病突变的分布与我们的模型一致。这项分析首次揭示了开放状态下原肌球蛋白和肌动蛋白之间相互作用的可能模式的结构见解。

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