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Electrostatic potentials and electrostatic interaction energies of rat cytochrome b5 and a simulated anion-exchange adsorbent surface.

机译:大鼠细胞色素b5和模拟的阴离子交换吸附剂表面的静电势和静电相互作用能。

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摘要

Electrostatic potentials were determined for the soluble tryptic core of rat cytochrome b5 (using a structure derived from homology modeling) and a simulated anion-exchange surface through application of the linearized finite-difference Poisson-Boltzmann equation with the simulation code UHBD. Objectives of this work included determination of the contributions of the various charged groups on the protein surface to electrostatic interactions with a simulated anion-exchange surface as a function of orientation, separation distance, and ionic strength, as well as examining the potential existence of a preferred contact orientation. Electrostatic interaction free energies for the complex of the model protein and the simulated surface were computed using the electrostatics section of UHBD employing a 110(3) grid. An initial coarse grid spacing of 2.0 A was required to obtain correct boundary conditions. The boundary conditions of the coarse grid were used in subsequent focusing steps until the electrostatic interaction free energies were relatively independent of grid spacing (at approximately 0.5 A). Explicit error analyses were performed to determine the effects of grid spacing and other model assumptions on the electrostatic interaction free energies. The computational results reveal the presence of a preferred interaction orientation; the interaction energy between these two entities, of opposite net charge, is repulsive over a range of orientations. The electrostatic interaction free energies appear to be the summation of multiple fractional interactions between the protein and the anion-exchange surface. The simulation results are compared with those of ion-exchange adsorption experiments with site-directed mutants of the recombinant protein. Comparisons of the results from the computational and experimental studies should lead to a better understanding of electrostatic interactions of proteins and charged surfaces.
机译:通过应用线性化的有限差分Poisson-Boltzmann方程和模拟代码UHBD,确定大鼠细胞色素b5的可溶性胰蛋白酶核心(使用源自同源性建模的结构)和模拟的阴离子交换表面的静电势。这项工作的目的包括确定蛋白质表面上各种带电基团对与模拟阴离子交换表面的静电相互作用的影响,这些作用是方向,分离距离和离子强度的函数,以及检查潜在的存在首选的接触方向。使用UHBD的静电部分(采用110(3)网格)计算模型蛋白质和模拟表面的复合物的静电相互作用自由能。为了获得正确的边界条件,需要2.0 A的初始粗网格间距。在随后的聚焦步骤中使用粗格栅的边界条件,直到静电相互作用自由能相对独立于格栅间距(大约为0.5 A)为止。进行了显式误差分析,以确定网格间距和其他模型假设对静电相互作用自由能的影响。计算结果表明存在优选的相互作用方向。净电荷相反的这两个实体之间的相互作用能在一系列方向上相互排斥。静电相互作用自由能似乎是蛋白质与阴离子交换表面之间多个分数相互作用的总和。将模拟结果与使用重组蛋白的定点突变体进行离子交换吸附实验的结果进行了比较。计算和实验研究结果的比较应该可以更好地理解蛋白质和带电表面的静电相互作用。

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