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首页> 外文期刊>Journal of Molecular Biology >MODELING OF PROTEIN CONFORMATIONAL FLUCTUATIONS IN PK(A) PREDICTIONS
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MODELING OF PROTEIN CONFORMATIONAL FLUCTUATIONS IN PK(A) PREDICTIONS

机译:蛋白质构象波动在PK(A)预测中的建模

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A method is presented to account for conformational fluctuations of a protein in predicting the pK(a) values of its titrating groups. Conformations of the protein are generated by conventional molecular dynamics or Monte Carlo simulations, in which the protonations of the titrating groups are fixed. For each protein conformation, the electrostatic free energies required to add a proton charge to a titrating group while other groups are either unprotonated or protonated are calculated within a dielectric continuum model. These are used to determine the mean protonations of the titrating groups in the conformation at a series of pH values. The mean protonations are then used to determine the relative weight of the particular conformation with the titrating groups having all possible protonations. A conformationally averaged mean protonation for each titrating group is finally obtained by the weighted sum of the group's mean protonations in all the conformations. This method is applied to yeast iso-1-ferricytochrome c. The predicted pK(a) values are in general agreement with experimental results. (C) 1997 Academic Press Limited. [References: 25]
机译:提出了一种方法来解释蛋白质的构象波动,以预测其滴定基团的pK(a)值。通过常规分子动力学或蒙特卡洛模拟产生蛋白质的构象,其中滴定基团的质子是固定的。对于每种蛋白质构象,在介电连续体模型中计算将质子电荷添加到滴定基团而其他基团未质子化或质子化所需的静电自由能。这些用于确定一系列pH值下构象中滴定基团的平均质子化。然后,平均质子用于确定具有所有可能质子的滴定基团的特定构象的相对重量。最后,通过所有构象中组平均质子的加权总和,得出每个滴定组的平均构象质子。该方法适用于酵母异-1-铁细胞色素c。预测的pK(a)值与实验结果基本一致。 (C)1997 Academic Press Limited。 [参考:25]

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