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Unusual dynamic properties of water near the ice-binding plane of hyperactive antifreeze protein

机译:高活性抗冻蛋白冰结合面附近水的异常动态特性

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The dynamical properties of solvation water of hyperactive antifreeze protein from Choristoneura fumiferana (Cf AFP) are analyzed and discussed in context of its antifreeze activity. The protein comprises of three well-defined planes and one of them binds to the surface of ice. The dynamical properties of solvation water around each of these planes were analyzed separately; the results are compared with the dynamical properties of solvation water of ice around its two crystallographic planes: basal and prism. Three main conclusions are inferred from our investigations. The first one is that the solvation shell of CfAFP does not seem to be particularly far-ranged, at least not beyond what is usually observed for proteins that do not interact with ice. Therefore, it does not appear to us that the antifreeze activity is enhanced by a long-ranged retardation of water mobility. Also the correlation between the collective mobility of water and the collective mobility of protein atoms highly resembles the one measured for the protein that does not interact with ice. Our second conclusion is that the dynamical properties of solvation water of CfAFP are non-uniform. The dynamics of solvation water of ice-binding plane is, in some respects, different from the dynamics of solvation water of the two remaining planes. The feature that distinguishes the dynamics of solvation water of the three planes is the activation energy of diffusion process. The third conclusion is that-from the three analyzed solvation shells of Cf AFP-the dynamical properties of solvation water of the ice-binding plane resemble the most the properties of solvation water of ice; note, however, that these properties still clearly differ from the dynamic properties of solvation water of ice. (C) 2015 AIP Publishing LLC.
机译:分析和讨论了来自墨西哥无花果(Chorstoneura fumiferana)(Cf AFP)的高活性抗冻蛋白的溶剂化水的动力学特性。该蛋白质由三个定义明确的平面组成,其中一个与冰表面结合。分别分析了这些平面周围的溶剂化水的动力学特性。将结果与冰的溶剂化水在其两个晶体学平面(基底和棱镜)周围的动力学特性进行了比较。从我们的调查中可以得出三个主要结论。第一个是CfAFP的溶剂化壳似乎没有特别宽泛的范围,至少没有超出通常与不与冰相互作用的蛋白质所观察到的范围。因此,在我们看来,防冻活性并未因水流动性的长期延迟而得到增强。水的集体迁移率与蛋白质原子的集体迁移率之间的相关性也与不与冰相互作用的蛋白质所测得的高度相似。我们的第二个结论是CfAFP的溶剂化水动力学特性不均匀。在某些方面,结冰平面的溶剂化水动力学不同于其余两个平面的溶剂化水动力学。区分这三个平面的溶剂化水动力学的特征是扩散过程的活化能。第三个结论是,从三个分析的Cf AFP溶剂化壳中,冰结合平面上的溶剂化水的动力学特性最类似于冰的溶剂化水的特性。但是请注意,这些性质仍明显不同于溶剂化冰的动态性质。 (C)2015 AIP Publishing LLC。

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