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Water structure and dynamics in the hydration layer of a type III anti-freeze protein

机译:III型抗冻结蛋白水合层中的水结构和动力学

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We report on a molecular dynamics study on the relation between the structure and the orientational (and hydrogen bond) dynamics of hydration water around the ocean pout AFP III anti-freeze protein. We find evidence for an increasing tetrahedral structure from the area opposite to the ice binding site (IBS) towards the protein IBS, with the strongest signal of tetrahedral structure around the THR-18 residue of the IBS. The tetrahedral structural parameter mostly positively correlates with increased reorientation decay times. Interestingly, for several key (polar) residues that are not part of the IBS but are in its vicinity, we observe a decrease of the reorientation time with increasing tetrahedral structure. A similar anti-correlation is observed for the hydrogen-bonded water molecules. These effects are enhanced at a lower temperature. We interpret these results in terms of the structure-making and structure-breaking residues. Moreover, we investigate the tetrahedral structure and dynamics of waters at a partially dehydrated IBS, and for the protein adsorbed at the air-water interface. We find that the mutation changes the preferred protein orientation upon adsorption at an air-water interface. These results are in agreement with the water-air Vibration Sum Frequency Generation spectroscopic experiments showing a strongly reduced tetrahedral signal upon mutation at the IBS.
机译:我们报告了对海洋突破AFP IRP III抗冻结蛋白水合水的结构与定向(和氢键)动态的关系的分子动力学研究。我们发现从与冰结合位点(IBS)相对的区域朝向蛋白质IBS的区域增加了证据,具有最强的四面体结构围绕IBS的Thr-18残基。四面体结构参数与增加的重新定向衰减时间呈正相关。有趣的是,对于不是IBS的几个关键(极性)残留物而是在其附近,我们观察到重新定向时间随着越来越多的四面体结构而降低。观察到与氢键水分子相似的抗相关性。这些效果在较低温度下增强。我们在结构制作和结构破坏残留物方面解释这些结果。此外,我们研究了部分脱水IBS的水域的四面体结构和动力学,以及吸附在空水界面的蛋白质。我们发现突变在空气界面吸附时改变优选的蛋白质取向。这些结果与水 - 空气振动和频率产生的光谱实验一致,显示出在IBS处的突变时强烈降低的四面体信号。

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