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蛋白质计算偶极矩的 pK(a) 位移影响。

Influence of pK(a) shifts on the calculated dipole moments of proteins.

机构信息

Department of Electrical and Computer Engineering, Brigham Young University, 459 Clyde Building, Provo, UT 84602, USA.

出版信息

Protein J. 2011 Oct;30(7):490-8. doi: 10.1007/s10930-011-9355-8.

Abstract

The protein dipole moment is a low-resolution parameter that characterizes the second-order charge organization of a biomolecule. Theoretical approaches to calculate protein dipole moments rely on pK(a) values, which are either computed individually for each ionizable residue or obtained from model compounds. The influence of pK(a) shifts are evaluated first by comparing calculated and measured dipole moments of β-lactoglobulin. Second, calculations are made on a dataset of 66 proteins from the Protein Data Bank, and average differences are determined between dipole moments calculated with model pK(a)s, pK(a)s derived using a Poisson-Boltzmann approach, and empirically-calculated pK(a)s. Dipole moment predictions that neglect pK(a) shifts are consistently larger than predictions in which they are included. The importance of pK(a) shifts are observed to vary with protein size, internal permittivity, and solution pH.

摘要

蛋白质偶极矩是一个低分辨率的参数,用于描述生物分子的二阶电荷组织。计算蛋白质偶极矩的理论方法依赖于 pK(a) 值,这些值要么为每个可电离残基单独计算,要么从模型化合物中获得。首先通过比较β-乳球蛋白的计算和测量偶极矩来评估 pK(a) 位移的影响。其次,在来自蛋白质数据库的 66 个蛋白质数据集上进行计算,并确定使用模型 pK(a)、使用泊松-玻尔兹曼方法得出的 pK(a) 和经验计算的 pK(a) 计算的偶极矩之间的平均差异。忽略 pK(a) 位移的偶极矩预测值始终大于包含它们的预测值。观察到 pK(a) 位移的重要性随蛋白质大小、内部介电常数和溶液 pH 值而变化。

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