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Electrostatic Potential Energy within a Protein Monitored by Metal Charge-Dependent Hydrogen Exchange

机译:金属电荷依赖性氢交换监测的蛋白质内的静电势能

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摘要

Hydrogen exchange measurements on Zn(II)-, Ga(III)-, and Ge(IV)-substituted Pyrococcus furiosus rubredoxin demonstrate that the log ratio of the base-catalyzed rate constants (Δ log kex) varies inversely with the distance out to at least 12 Å from the metal. This pattern is consistent with the variation of the amide nitrogen pK values with the metal charge-dependent changes in the electrostatic potential. Fifteen monitored amides lie within this range, providing an opportunity to assess the strength of electrostatic interactions simultaneously at numerous positions within the structure. Poisson-Boltzmann calculations predict an optimal effective internal dielectric constant of 6. The largest deviations between the experimentally estimated and the predicted ΔpK values appear to result from the conformationally mobile charged side chains of Lys-7 and Glu-48 and from differential shielding of the peptide units arising from their orientation relative to the metal site.
机译:Zn(II)-,Ga(III)-和Ge(IV)取代的激烈热球菌氧化还原酶的氢交换测量结果表明,碱催化的速率常数的对数比(Δlog kex)与到与金属至少12Å。该模式与酰胺氮pK值随静电势中金属电荷依赖性变化的变化一致。在该范围内有15种受监测的酰胺,提供了机会同时评估结构内多个位置的静电相互作用强度。 Poisson-Boltzmann计算预测最佳内部有效介电常数为6。实验估计值与预测ΔpK值之间的最大偏差似乎是由Lys-7和Glu-48的构象可移动带电侧链以及对Dys-7的差分屏蔽造成的。肽单元是由于它们相对于金属位点的取向而产生的。

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