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首页> 外文期刊>The Journal of Chemical Physics >How water layers on graphene affect folding and adsorption of TrpZip2
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How water layers on graphene affect folding and adsorption of TrpZip2

机译:石墨烯上的水层如何影响TrpZip2的折叠和吸附

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摘要

We present a computational study of the folding of the Trp-rich beta-hairpin TrpZip2 near graphene, a surface of interest as a platform for biosensors. The protein adsorbs to the surface, populating a new bound, folded state, coexisting with extended, adsorbed conformations. Adsorption and folding are modulated by direct interactions between the indole rings of TrpZip2 and the rings on the graphene surface, as well as by indirect water-mediated interactions. In particular, we observe strong layering of water near graphene, ice-like water configurations, and the formation of short lived hydrogen-bonds between water and protein. In order to study the effect of this layering in more detail, we modified the interactions between graphene and water to obtain two extreme cases: (1) enhanced layering of water that prevents the peptide from penetrating the water layer thereby enabling it to fold to a bulk-like structure, and (2) disruption of the water layer leading to adsorption and unfolding of the protein on the surface. These studies illuminate the roles of direct and solvent mediated interactions in modulating adsorption and folding of proteins on surfaces. (C) 2014 AIP Publishing LLC.
机译:我们目前对石墨烯附近的Trp丰富的β-发夹TrpZip2折叠的计算研究,石墨烯是一种作为生物传感器平台的感兴趣表面。蛋白质吸附到表面,形成新的结合,折叠状态,与扩展的吸附构象共存。 TrpZip2的吲哚环与石墨烯表面上的环之间的直接相互作用以及间接的水介导的相互作用可调节吸附和折叠。特别是,我们观察到石墨烯附近的水有很强的分层,像冰一样的水结构,以及水和蛋白质之间短寿命的氢键的形成。为了更详细地研究这种分层的效果,我们修改了石墨烯与水之间的相互作用以获得两种极端情况:(1)增强的水分层,可防止肽穿透水层,从而使其折叠成大块状结构,以及(2)水层破裂,导致蛋白质在表面吸附和展开。这些研究阐明了直接和溶剂介导的相互作用在调节蛋白质在表面上的吸附和折叠中的作用。 (C)2014 AIP Publishing LLC。

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