【2h】

Thermodynamic prediction of protein neutrality

机译:蛋白质中性的热力学预测

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摘要

We present a simple theory that uses thermodynamic parameters to predict the probability that a protein retains the wild-type structure after one or more random amino acid substitutions. Our theory predicts that for large numbers of substitutions the probability that a protein retains its structure will decline exponentially with the number of substitutions, with the severity of this decline determined by properties of the structure. Our theory also predicts that a protein can gain extra robustness to the first few substitutions by increasing its thermodynamic stability. We validate our theory with simulations on lattice protein models and by showing that it quantitatively predicts previously published experimental measurements on subtilisin and our own measurements on variants of TEM1 β-lactamase. Our work unifies observations about the clustering of functional proteins in sequence space, and provides a basis for interpreting the response of proteins to substitutions in protein engineering applications.
机译:我们提出了一个简单的理论,使用热力学参数来预测蛋白质在一个或多个随机氨基酸取代后保留野生型结构的可能性。我们的理论预测,对于大量取代,蛋白质保留其结构的概率将随着取代的数量呈指数下降,而这种下降的严重性取决于结构的性质。我们的理论还预测,蛋白质可以通过提高其热力学稳定性来获得对前几个取代的额外鲁棒性。我们通过对晶格蛋白模型进行仿真,并证明它可以定量预测以前发表的枯草杆菌蛋白酶实验测量值和我们自己对TEM1β-内酰胺酶变异体的测量结果,来验证我们的理论。我们的工作统一了有关功能蛋白在序列空间中聚集的观察结果,并为解释蛋白质在蛋白质工程应用中对取代的反应提供了基础。

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