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Proteins and Peptides at Gold Surfaces: Insights from Atomistic Simulations

机译:金表面的蛋白质和肽:原子模拟的见解

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Computer simulations at the atomistic level, jointly with experiments, can provide the microscopic picture behind protein-surface interactions. The complexity of the inherent phenomena, that span several time and length scales, call for a hierarchical strategy, from electronic structure approaches (limited in the accessible sizes and times) to classical methods, able to treat larger systems and longer time scales, but involving more assumptions and providing less details. Here we introduce the atomistic simulation methods that we have developed and applied to treat the interaction of peptides and proteins with the Au(111) surface in water. We succinctly describe principles, assumptions and limitations of ab initio, classical atomistic molecular dynamics and Brownian dynamics docking methods as applied to the protein-surface problem, with specific focus on the work of our group. The possible extension to coarse-grained method is also discussed.
机译:与实验共同的原子水平的计算机模拟可以提供蛋白质表面相互作用后面的微观图像。固有现象的复杂性,跨越多个时间和长度尺度,从电子结构方法(可访问大小和时间的限制)呼叫分层策略到经典方法,能够处理更大的系统和更长的时间尺度,但涉及更多假设并提供更少的细节。在这里,我们介绍了我们开发和应用以治疗肽和蛋白质在水中的Au(111)表面的相互作用的原子模拟方法。我们简洁地描述了AB Initio,经典原子分子动力学和布朗动力学对接方法的原则,假设和局限性,其应用于蛋白质 - 表面问题,具体关注我们组的工作。还讨论了粗粒化方法的可能延伸。

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