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Competing Adsorption between Hydrated Peptides and Water onto Metal Surfaces: From Electronic to Conformational Properties

机译:竞争性水合肽与水在金属表面上的吸附:从电子性质到构象性质

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摘要

Inorganic-(bio)organic interfaces are of central importance in many fields of current research. Theoretical and computational tools face the difficult problem of the different time and length scales that are involved and linked in a nontrivial way. In this work, a recently proposed hierarchical quantum-classical scale-bridging approach is further developed to study large flexible molecules. The approach is then applied to study the adsorption of oligopeptides on a hydrophilic Pt(111) surface under complete wetting conditions. We examine histidine sequences, which are well known for their binding affinity to metal surfaces. Based on a comparison with phenylalanine, which binds as strong as histidine under high vacuum conditions but, as we show, has no surface affinity under wet conditions, we illustrate the mediating effects of near-surface water molecules. These contribute significantly to the mechanism and strength of peptide binding. In addition to providing physical-chemical insights in the mechanism of surface binding, our computational approach provides future opportunities for surface-specific sequence design.
机译:无机-(生物)有机界面在当前研究的许多领域中至关重要。理论和计算工具面临着以不平凡的方式涉及和链接的不同时间和长度尺度的难题。在这项工作中,进一步提出了一种新近提出的分级量子-经典尺度桥接方法来研究大的柔性分子。然后将该方法应用于研究寡肽在完全润湿条件下在亲水性Pt(111)表面上的吸附。我们检查了组氨酸序列,该序列因其与金属表面的结合亲和力而闻名。基于与苯丙氨酸的比较,苯丙氨酸在高真空条件下的结合力与组氨酸一样强,但如我们所示,在湿润条件下没有表面亲和力,我们说明了近地表水分子的介导作用。这些显着有助于肽结合的机理和强度。除了提供有关表面结合机理的物理化学见解之外,我们的计算方法还为表面特异性序列设计提供了未来的机会。

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