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Direct Measurement of Charge Regulation in Metalloprotein Electron Transfer

机译:金属蛋白电子转移中电荷调节的直接测量

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摘要

Determining whether a protein regulates its net electrostatic charge during electron transfer (ET) will deepen our mechanistic understanding of how polypeptides tune rates and free energies of ET (e.g., by affecting reorganization energy, and/or redox potential). Charge regulation during ET has never been measured for proteins because few tools exist to measure the net charge of a folded protein in solution at different oxidation states. Herein, we used a niche analytical tool (protein charge ladders analyzed with capillary electrophoresis) to determine that the net charges of myoglobin, cytochrome c, and azurin change by 0.62±0.06, 1.19±0.02, and 0.51±0.04 units upon single ET. Computational analysis predicts that these fluctuations in charge arise from changes in the pK a values of multiple non‐coordinating residues (predominantly histidine) that involve between 0.42–0.90 eV. These results suggest that ionizable residues can tune the reactivity of redox centers by regulating the net charge of the entire protein–cofactor–solvent complex.
机译:确定蛋白质是否在电子转移(ET)期间调节其净静电荷将加深我们对多肽如何调节ET的速率和自由能的机械理解(例如,通过影响重组能量和/或氧化还原电位)。从未测量过蛋白质在ET期间的电荷调节,因为很少有工具可以测量溶液中处于不同氧化态的折叠蛋白质的净电荷。在本文中,我们使用了一种利基分析工具(通过毛细管电泳分析了蛋白电荷梯),确定了单次ET时,肌红蛋白,细胞色素c和天青蛋白的净电荷变化了0.62±0.06、1.19±0.02和0.51±0.04个单位。计算分析预测,电荷的这些波动是由多个非配位残基(主要是组氨酸)的pK a值的变化引起的,涉及0.42–0.90 eV。这些结果表明,可电离的残基可以通过调节整个蛋白质-辅因子-溶剂复合物的净电荷来调节氧化还原中心的反应性。

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