首页> 外文期刊>Journal of chemical theory and computation: JCTC >Exploring the Unfolding Pathway of Maltose Binding Proteins: An Integrated Computational Approach
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Exploring the Unfolding Pathway of Maltose Binding Proteins: An Integrated Computational Approach

机译:探索麦芽糖结合蛋白的发展途径:一种综合的计算方法。

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Recent single-molecule force spectroscopy experiments on the Maltose Binding Proteins (MBPs) identified four stable structural units, termed unfoldons, that resist mechanical stress and determine the intermediates of the unfolding pathway. In this work, we analyze the topological origin and the dynamical role of the unfoldons using an integrated approach which combines a graph-theoretical analysis of the interaction network of the MBP native-state with steered molecular dynamics simulations. The topological analysis of the native state, while revealing the structural nature of the unfoldons, provides a framework to interpret the MBP mechanical unfolding pathway. Indeed, the experimental pathway can be effectively predicted by means of molecular dynamics simulations with a simple topology-based and low-resolution model of the MBP. The results obtained from the coarse-grained approach are confirmed and further refined by all-atom molecular dynamics.
机译:最近在麦芽糖结合蛋白(MBP)上进行的单分子力光谱实验确定了四个稳定的结构单元,称为解折叠,可抵抗机械应力并确定解折叠途径的中间体。在这项工作中,我们使用集成的方法来分析展开的拓扑起源和动力学作用,该方法将对MBP原始状态的相互作用网络的图论分析与受控分子动力学模拟相结合。对自然状态的拓扑分析,虽然揭示了展开结构的结构性质,但提供了一个框架来解释MBP机械展开路径。确实,可以通过分子动力学模拟和基于MBP的简单的基于拓扑的低分辨率模型有效地预测实验途径。从粗粒度方法获得的结果得到证实,并通过全原子分子动力学进一步完善。

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