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首页> 外文期刊>International Journal of Quantum Chemistry >Functional Assessment of 'In Vivo' and 'In Silico' Mutations in the Guanine Binding Site of RNase T_1:A DFT Study
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Functional Assessment of 'In Vivo' and 'In Silico' Mutations in the Guanine Binding Site of RNase T_1:A DFT Study

机译:DFT研究:RNase T_1鸟嘌呤结合位点的“体内”和“计算机”突变的功能评估

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摘要

Experimentally,the functional assessment of amino acid side chains in proteins is carried out by comparing parameters such as binding constants for the wild-type protein and a mutant protein in which the considered side chain is deleted.In the present study,we apply a density functional theory (DFT) methodology to obtain changes in binding energy upon mutations in the enzyme ribonuclease T_1.Mutant structures were either taken directly from crystallographic data ("in vivo") allowing for conformational changes upon mutation,or derived from the wild-type ("in silico").Excluding entropic contributions,the computed interaction energy changes upon mutation in vivo correlate qualitatively well with experimental binding free energy changes.In contrast,the in silico approach does not perform as well,especially for residues that contribute largely to binding.Subsequently,we assessed the applicability of the in vivo approach by analyzing the functional cooperativity between pairs of side chains.
机译:在实验中,通过比较参数(例如野生型蛋白和缺失了所考虑的侧链的突变蛋白的结合常数)来进行蛋白质中氨基酸侧链的功能评估。在本研究中,我们应用密度的功能理论(DFT)方法获得了核糖核酸酶T_1突变后结合能的变化。突变体结构直接来自于晶体学数据(“体内”),从而允许突变后发生构象变化,或者来源于野生型(除了熵的贡献,体内突变后计算的相互作用能的变化与实验结合自由能的变化在质量上具有良好的相关性。相反,计算机学的方法效果不佳,尤其是对于那些对结合有很大贡献的残基随后,我们通过分析成对的侧链之间的功能协作性来评估体内方法的适用性。

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