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Different effects of zwitterion and ethylene glycol on proteins

机译:两性离子和乙二醇对蛋白质的不同作用

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In this work, we investigated the effects of carboxybetaine (CB) and (ethylene glycol)4 (EG4) solutes on chymotrypsin inhibitor 2 (CI2) as a model protein using molecular dynamics simulations. The properties studied include the radial distribution functions of these two solutes to the C-α atoms of the 64 residues of CI2, the average numbers of solute-protein and water-protein hydrogen bonds, the root mean square deviation of the C-α atoms of the protein, and the solvent access surface area of the protein. Results show that these two solutes share some common properties while have some different effects on the protein. Both of these two solutes do not accumulate preferentially near the protein and CI2 is folded with either of them. However, CI2 is found to have properties in the CB solution closer to bulk water, whereas CI2 shows reduced flexibility and decreased SASA of the hydrophobic domain in the EG4 solution. Although the protein is folded with both CB and EG4, superhydrophilic CB has a minimal effect on the protein due to the shared zwitterionic nature of both CB and protein whereas amphiphilic EG4 alters the properties of the protein via hydrophobic interactions.
机译:在这项工作中,我们使用分子动力学模拟研究了羧基甜菜碱(CB)和(乙二醇)4(EG4)溶质对胰凝乳蛋白酶抑制剂2(CI2)作为模型蛋白的影响。研究的性质包括这两种溶质对CI2 64个残基的C-α原子的径向分布函数,溶质-蛋白质和水-蛋白质氢键的平均数,C-α原子的均方根偏差蛋白质的含量,以及溶剂接触蛋白质的表面积。结果表明,这两种溶质具有一些共同的特性,同时对蛋白质具有不同的影响。这两种溶质都不优先在蛋白质附近积聚,CI2被其中的任何一个折叠。但是,发现CI2在CB溶液中具有更接近散装水的特性,而CI2在EG4溶液中显示出降低的柔韧性和疏水域的SASA降低。尽管蛋白质被CB和EG4折叠,但由于CB和蛋白质的两性离子性,超亲水性CB对蛋白质的影响最小,而两亲性EG4通过疏水相互作用改变了蛋白质的特性。

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