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首页> 外文期刊>Journal of Colloid and Interface Science >The electrostatic interaction of rigid, globular proteins with arbitrary charge distributions
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The electrostatic interaction of rigid, globular proteins with arbitrary charge distributions

机译:具有任意电荷分布的刚性球状蛋白质的静电相互作用

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We use the linearized Poisson-Boltzmann equation to construct an analytical estimate of the electrostatic interaction energy for two rigid, globular proteins with arbitrary charge distributions represented by spherical multipole moments. Our analysis avoids invoking the superposition approximation and therefore is not limited to weakly interacting double layers. The interaction energy is a function of the protein properties (radii, multipole moments, and dielectric constant); the geometry (protein separation and orientations); and the solution properties (Debye screening length and dielectric constant). The proteins may be different. This is an extension of previous treatments for constant surface charge or for constant surface potential particles that are more applicable to isotropic colloids. We give example calculations for the interactions of Ribonuclease A molecules interacting in an electrolyte. These results suggest that electrostatic effects may be largely responsible for attractions between proteins, even if they are like charged. A set of routines using MATHEMATICA is available for performing the interaction energy and electrostatic potential calculations. (C) 1998 Academic Press. [References: 45]
机译:我们使用线性化的Poisson-Boltzmann方程来构造两个刚性,球形蛋白质的静电相互作用能的解析估计,这些蛋白质具有以球形多极矩表示的任意电荷分布。我们的分析避免了调用叠加近似,因此不限于弱相互作用的双层。相互作用能是蛋白质性质(半径,多极矩和介电常数)的函数;几何形状(蛋白质分离和方向);和溶液性质(德拜屏蔽长度和介电常数)。蛋白质可能不同。这是先前对恒定表面电荷或恒定表面电势粒子更适用于各向同性胶体的处理方法的扩展。我们给出了核糖核酸酶A分子在电解质中相互作用的相互作用的示例计算。这些结果表明,静电效应可能是导致蛋白质之间相互吸引的主要原因,即使它们像带电的一样。使用MATHEMATICA的一组例程可用于执行相互作用能和静电势计算。 (C)1998年学术出版社。 [参考:45]

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