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Computational studies on mutant protein stability: The correlation between surface thermal expansion and protein stability.

机译:突变蛋白稳定性的计算研究:表面热膨胀与蛋白稳定性之间的关系。

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摘要

Thermal stability of mutant proteins has been investigated using temperature dependent molecular dynamics (MD) simulations in vacuo. The numerical modeling was aimed at mimicking protein expansion upon heating. After the conditions for an expanding protein accessible surface area were established for T4 lysozyme and barnase wild-type proteins, MD simulations were carried out under the same conditions using the crystal structures of several mutant proteins. The computed thermal expansion of the accessible surface area of mutant proteins was found to be strongly correlated with their experimentally measured stabilities. A similar, albeit weaker, correlation was observed for model mutant proteins. This opens the possibility of obtaining stability information directly from protein structure.
机译:突变蛋白的热稳定性已在真空中使用温度依赖性分子动力学(MD)模拟进行了研究。该数值模型旨在模拟加热时蛋白质的膨胀。在为T4溶菌酶和Barnase野生型蛋白建立了可扩展蛋白可及表面积的条件后,使用几种突变蛋白的晶体结构在相同条件下进行了MD模拟。发现突变蛋白的可及表面积的计算的热膨胀与其实验测量的稳定性高度相关。对于模型突变蛋白,观察到了相似的相关性,尽管相关性较弱。这打开了直接从蛋白质结构获得稳定性信息的可能性。

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