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首页> 外文期刊>The Open Biochemistry Journal >Multiple Unfolding Intermediates Obtained by Molecular Dynamic Simulations under Stretching for Immunoglobulin-Binding Domain of Protein G
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Multiple Unfolding Intermediates Obtained by Molecular Dynamic Simulations under Stretching for Immunoglobulin-Binding Domain of Protein G

机译:蛋白质分子的免疫球蛋白结合域拉伸下通过分子动力学模拟获得的多个展开中间体。

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摘要

We have studied the mechanical properties of the immunoglobulin-binding domain of protein G at the atomic level under stretching at constant velocity using molecular dynamics simulations. We have found that the unfolding process can occur either in a single step or through intermediate states. Analysis of the trajectories from the molecular dynamic simulations showed that the mechanical unfolding of the immunoglobulin-binding domain of protein G is triggered by the separation of the terminal β-strands and the order in which the secondary-structure elements break is practically the same in two- and multi-state events and at the different extension velocities studied. It is seen from our analysis of 24 trajectories that the theoretical pathway of mechanical unfolding for the immunoglobulin-binding domain of protein G does not coincide with that proposed in denaturant studies in the absence of force.
机译:我们已经使用分子动力学模拟研究了恒速拉伸下蛋白质G的免疫球蛋白结合域在原子水平上的机械性能。我们发现,展开过程可以在单个步骤中或通过中间状态发生。从分子动力学模拟的轨迹分析表明,蛋白质G的免疫球蛋白结合域的机械解折叠是由末端β链的分离触发的,二级结构元素断裂的顺序实际上是相同的。两态和多态事件,并以不同的扩展速度进行研究。从我们对24条轨迹的分析中可以看出,蛋白质G的免疫球蛋白结合域的机械展开的理论途径与在没有力的情况下变性研究中提出的理论途径不一致。

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