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The optimization of protein-solvent interactions: thermostability and the role of hydrophobic and electrostatic interactions.

机译:蛋白质-溶剂相互作用的最优化:热稳定性以及疏水和静电相互作用的作用。

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摘要

Protein-solvent interactions were analyzed using an optimization parameter based on the ratio of the solvent-accessible area in the native and the unfolded protein structure. The calculations were performed for a set of 183 nonhomologous proteins with known three-dimensional structure available in the Protein Data Bank. The dependence of the total solvent-accessible surface area on the protein molecular mass was analyzed. It was shown that there is no difference between the monomeric and oligomeric proteins with respect to the solvent-accessible area. The results also suggested that for proteins with molecular mass above some critical mass, which is about 28 kDa, a formation of domain structure or subunit aggregation into oligomers is preferred rather than a further enlargement of a single domain structure. An analysis of the optimization of both protein-solvent and charge-charge interactions was performed for 14 proteins from thermophilic organisms. The comparison of the optimization parameters calculated for proteins from thermophiles and mesophiles showed that the former are generally characterized by a high degree of optimization of the hydrophobic interactions or, in cases where the optimization of the hydrophobic interactions is not sufficiently high, by highly optimized charge-charge interactions.
机译:使用基于天然和未折叠蛋白质结构中溶剂可及区域的比率的优化参数分析蛋白质-溶剂相互作用。对蛋白质数据库中可用的具有已知三维结构的183种非同源蛋白质进行了计算。分析了总溶剂可及表面积对蛋白质分子量的依赖性。结果表明,相对于溶剂可及区域,单体蛋白和寡聚蛋白之间没有差异。结果还表明,对于分子量大于某个临界质量(约为28 kDa)的蛋白质,结构域结构或亚基聚集形成寡聚物是优选的,而不是进一步扩大单个结构域的结构。对来自嗜热生物的14种蛋白质进行了蛋白质-溶剂和电荷-电荷相互作用的优化分析。对嗜热菌和嗜温菌蛋白质的优化参数的比较表明,前者的特征通常是疏水相互作用的高度优化,或者在疏水相互作用的优化不够高的情况下,电荷高度优化电荷相互作用。

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