首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Stability of Norwalk Virus Capsid Protein Interfaces Evaluated by in Silico Nanoindentation
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Stability of Norwalk Virus Capsid Protein Interfaces Evaluated by in Silico Nanoindentation

机译:通过计算机纳米压痕评估Norwalk病毒衣壳蛋白界面的稳定性。

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Norwalk virus causes severe gastroenteritis for which there is currently no specific anti-viral therapy. A stage of the infection process is uncoating of the protein capsid to expose the viral genome and allow for viral replication. A mechanical characterization of the Norwalk virus may provide important information relating to the mechanism of uncoating. The mechanical strength of the Norwalk virus has previously been investigated using atomic force microscopy (AFM) nanoindentation experiments. Those experiments cannot resolve specific molecular interactions, and therefore we have employed a molecular modeling approach to gain insights into the potential uncoating mechanism of the Norwalk capsid. In this study, we perform simulated nanoindentation using a coarse-grained structure based model, which provides an estimate of the spring constant in good agreement with the experimentally determined value. We further analyze the fracture mechanisms and determine weak interfaces in the capsid structure which are potential sites to inhibit uncoating by stabilization of these weak interfaces. We conclude by identifying potential target sites at the junction of a weak protein-protein interface.
机译:诺沃克病毒会引起严重的胃肠炎,目前尚无针对性的抗病毒疗法。感染过程的一个阶段是将蛋白衣壳脱壳以暴露病毒基因组并允许病毒复制。诺沃克病毒的机械特征可能提供有关脱壳机制的重要信息。先前已经使用原子力显微镜(AFM)纳米压痕实验研究了诺沃克病毒的机械强度。这些实验无法解决特定的分子相互作用,因此,我们采用了分子建模方法来深入了解Norwalk衣壳的潜在脱膜机理。在这项研究中,我们使用基于粗粒度结构的模型执行模拟纳米压痕,该模型提供了弹簧常数的估计值,与实验确定的值非常吻合。我们进一步分析断裂机理,并确定衣壳结构中的薄弱界面,这是通过稳定这些薄弱界面来抑制脱膜的潜在部位。我们通过确定弱蛋白-蛋白界面交界处的潜在靶位点来得出结论。

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