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球状蛋白质中离子化基团间静电相互作用的空间优化

Spatial optimization of electrostatic interactions between the ionized groups in globular proteins.

作者信息

Spassov V Z, Atanasov B P

机构信息

Central Laboratory of Biophysics, Bulgarian Academy of Sciences, Sofia.

出版信息

Proteins. 1994 Jul;19(3):222-9. doi: 10.1002/prot.340190306.

DOI:10.1002/prot.340190306
PMID:7937735
Abstract

A model approach is suggested to estimate the degree of spatial optimization of the electrostatic interactions in protein molecules. The method is tested on a set of 44 globular proteins, representative of the available crystallographic data. The theoretical model is based on macroscopic computation of the contribution of charge-charge interactions to the electrostatic term of the free energy for the native proteins and for a big number of virtual structures with randomly distributed on protein surface charge constellations (generated by a Monte-Carlo technique). The statistical probability of occurrence of random structures with electrostatic energies lower than the energy of the native protein is suggested as a criterion for spatial optimization of the electrostatic interactions. The results support the hypothesis that the folding process optimizes the stabilizing effect of electrostatic interactions, but to very different degree for different proteins. A parallel analysis of ion pairs shows that the optimization of the electrostatic term in globular proteins has increasingly gone in the direction of rejecting the repulsive short contacts between charges of equal sign than of creating of more salt bridges (in comparison with the statistically expected number of short-range ion pairs in the simulated random structures). It is observed that the decrease in the spatial optimization of the electrostatic interactions is usually compensated for by an appearance of disulfide bridges in the covalent structure of the examined proteins.

摘要

本文提出了一种模型方法来估计蛋白质分子中静电相互作用的空间优化程度。该方法在一组44种球状蛋白质上进行了测试,这些蛋白质代表了现有的晶体学数据。理论模型基于对天然蛋白质以及大量通过蒙特卡罗技术生成的、电荷在蛋白质表面随机分布的虚拟结构的电荷 - 电荷相互作用对自由能静电项贡献的宏观计算。提出将静电能低于天然蛋白质能量的随机结构出现的统计概率作为静电相互作用空间优化的标准。结果支持了这样的假设,即折叠过程优化了静电相互作用的稳定作用,但不同蛋白质的优化程度差异很大。对离子对的平行分析表明,球状蛋白质中静电项的优化越来越倾向于排斥同号电荷之间的短程排斥接触,而不是形成更多的盐桥(与模拟随机结构中统计预期的短程离子对数量相比)。据观察,静电相互作用空间优化的降低通常会通过在所研究蛋白质的共价结构中出现二硫键来补偿。

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