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论蛋白质与聚电解质的络合作用。

On the complexation of proteins and polyelectrolytes.

作者信息

da Silva Fernando Luís B, Lund Mikael, Jönsson Bo, Akesson Torbjörn

机构信息

Departamento de Física e Química, Faculdade de Ciências Farmacêuticas de Ribeirão Preto, Av. do café, s/no., Universidade de São Paulo, 14040-903 Ribeirão Preto, SP, Brazil.

出版信息

J Phys Chem B. 2006 Mar 9;110(9):4459-64. doi: 10.1021/jp054880l.

Abstract

Both natural and synthetic polyelectrolytes form strong complexes with a variety of proteins. One peculiar phenomenon is that association can take place even when the protein and the polyelectrolyte carry the same charge. This has been interpreted as if the ion-dipole interaction can overcome the repulsive ion-ion interaction. On the basis of Monte Carlo simulations and perturbation theory, we propose a different explanation for the association, namely, charge regulation. We have investigated three different protein-polymer complexes and found that the induced ionization of amino acid residues due to the polyelectrolyte leads to a surprisingly strong attractive interaction between the protein and the polymer. The extra attraction from this charge-induced charge interaction can be several kT and is for the three cases studied here, lysozyme, alpha-lactalbumin, and beta-lactoglobulin, of the same magnitude or stronger than the ion-dipole interaction. The magnitude of the induced charge is governed by a response function, the protein charge capacitance Z2-Z2. This fluctuation term can easily be calculated in a simulation or measured in a titration experiment.

摘要

天然和合成聚电解质都能与多种蛋白质形成强复合物。一个奇特的现象是,即使蛋白质和聚电解质带有相同电荷,缔合也能发生。这被解释为离子 - 偶极相互作用可以克服排斥性的离子 - 离子相互作用。基于蒙特卡罗模拟和微扰理论,我们对这种缔合提出了一种不同的解释,即电荷调节。我们研究了三种不同的蛋白质 - 聚合物复合物,发现聚电解质引起的氨基酸残基诱导电离导致蛋白质与聚合物之间产生惊人的强吸引力相互作用。这种电荷诱导电荷相互作用产生的额外吸引力可达几个kT,对于此处研究的三种情况,即溶菌酶、α - 乳白蛋白和β - 乳球蛋白,其大小与离子 - 偶极相互作用相同或更强。诱导电荷的大小由一个响应函数,即蛋白质电荷电容Z2 - Z2决定。这个波动项在模拟中很容易计算,或者在滴定实验中测量。

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