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首页> 外文期刊>The Journal of Chemical Physics >In silico studies of the properties of water hydrating a small protein
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In silico studies of the properties of water hydrating a small protein

机译:在计算机上研究水为小蛋白水合的特性

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Atomistic molecular dynamics simulation of an aqueous solution of the small protein HP-36 has been carried out with explicit solvent at room temperature. Efforts have been made to explore the influence of the protein on the relative packing and ordering of water molecules around its secondary structures, namely, three a-helices. The calculations reveal that the inhomogeneous water ordering and density distributions around the helices are correlated with their relative hydrophobicity. Importantly, we have identified the existence of a narrow relatively dehydrated region containing randomly organized "quasi-free" water molecules beyond the first layer of "bound" waters at the protein surface. These water molecules with relatively weaker binding energies form the transition state separating the "bound" and "free" water molecules at the interface. Further, increased contribution of solid-like caging motions of water molecules around the protein is found to be responsible for reduced fluidity of the hydration layer. Interestingly, we notice that the hydration layer of helix-3 is more fluidic with relatively higher entropy as compared to the hydration layers of the other two helical segments. Such characteristics of helix-3 hydration layer correlate well with the activity of HP-36, as helix-3 contains the active site of the protein. (C) 2014 AIP Publishing LLC.
机译:小蛋白质HP-36水溶液的原子分子动力学模拟已在室温下使用显性溶剂进行。已经努力探索蛋白质对其二级结构(即三个α-螺旋)周围水分子的相对堆积和有序性的影响。计算结果表明,螺旋周围不均匀的水有序性和密度分布与其相对疏水性有关。重要的是,我们已经确定存在一个狭窄的相对脱水区域,该区域包含蛋白质表面第一层“结合”水以外的随机组织的“准无”水分子。这些具有较弱结合能的水分子在界面处形成分离“结合”和“游离”水分子的过渡态。此外,发现水分子围绕蛋白质的固体笼状运动的增加贡献是导致水合层的流动性降低的原因。有趣的是,我们注意到,与其他两个螺旋段的水合层相比,螺旋3的水合层具有更高的熵和相对较高的流动性。螺旋3的水合层的这种特性与HP-36的活性密切相关,因为螺旋3包含蛋白质的活性位点。 (C)2014 AIP Publishing LLC。

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