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静电作用对人血红蛋白中二聚体 - 四聚体组装能量学的贡献:pH依赖性及特异性结合氯离子的影响。

Electrostatic contributions to the energetics of dimer-tetramer assembly in human hemoglobin: pH dependence and effect of specifically bound chloride ions.

作者信息

Flanagan M A, Ackers G K, Matthew J B, Hanania G I, Gurd F R

出版信息

Biochemistry. 1981 Dec 22;20(26):7439-49. doi: 10.1021/bi00529a018.

Abstract

The pH dependence and effects of specifically bound chloride ions on the electrostatic contribution to the energetics of human hemoglobin dimer-tetramer assembly were computed for deoxy- and liganded hemoglobin. In the absence of bound chloride, the electrostatic contribution models the observed contrasting pH dependence of dimer-tetramer assembly for deoxy- and oxyhemoglobin. The effect of specifically bound chloride on the computations depends on the number and placement of the anions. Deoxy assembly shows a greater sensitivity to anion binding, with effects propagating as far as 32 A from the binding site. This sensitivity suggests a mechanism for electronic communication with the heme. At pH 7.4, 24-34% of the experimental value for deoxy and 73-85% for oxy dimer-tetramer assembly stabilization are predicted. Together with the findings of Chu and Ackers [Chu, A. H., & Ackers, G. K. (1981) J. Biol. Chem. 256, 1199] and other recent work, these results suggest that salt bridge formation is not the dominant energetic factor favoring deoxyhemoglobin dimer-tetramer assembly. Results of this work suggest that the marked electrostatic stabilization favoring oxy dimer-tetramer assembly may be a significant contributor to the quaternary enhancement observed in assembly reactions whereas the nonelectrostatic factors favoring deoxy dimer-tetramer assembly may be largely responsible for quaternary constraint.

摘要

针对脱氧血红蛋白和配体血红蛋白,计算了pH依赖性以及特异性结合的氯离子对人血红蛋白二聚体 - 四聚体组装能量学中静电贡献的影响。在没有结合氯离子的情况下,静电贡献模拟了观察到的脱氧血红蛋白和氧合血红蛋白二聚体 - 四聚体组装的对比pH依赖性。特异性结合的氯离子对计算的影响取决于阴离子的数量和位置。脱氧组装对阴离子结合表现出更大的敏感性,其影响可传播至距结合位点达32埃处。这种敏感性提示了一种与血红素进行电子通讯的机制。在pH 7.4时,预测的脱氧血红蛋白二聚体 - 四聚体组装稳定性为实验值的24 - 34%,氧合血红蛋白的为73 - 85%。结合Chu和Ackers [Chu, A. H., & Ackers, G. K. (1981) J. Biol. Chem. 256, 1199] 的研究结果以及其他近期工作,这些结果表明盐桥形成并非有利于脱氧血红蛋白二聚体 - 四聚体组装的主要能量因素。这项工作的结果表明,有利于氧合血红蛋白二聚体 - 四聚体组装的显著静电稳定作用可能是组装反应中观察到的四级增强的重要贡献因素,而有利于脱氧血红蛋白二聚体 - 四聚体组装的非静电因素可能在很大程度上导致了四级限制。

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