首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Long-Range Electron Transfer Special Feature: Differential influence of dynamic processes on forward and reverse electron transfer across a protein-protein interface
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Long-Range Electron Transfer Special Feature: Differential influence of dynamic processes on forward and reverse electron transfer across a protein-protein interface

机译:远程电子转移的特殊功能:动态过程对跨蛋白质-蛋白质界面的正向和反向电子转移的不同影响

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摘要

We propose that the forward and reverse halves of a flash-induced protein-protein electron transfer (ET) photocycle should exhibit differential responses to dynamic interconversion of configurations when the most stable configuration is not the most reactive, because the reactants exist in different initial configurations: the flash-photoinitiated forward ET process begins with the protein partners in an equilibrium ensemble of configurations, many of which have little or no reactivity, whereas the reactant of the thermal back ET (the charge-separated intermediate) is formed in a nonequilibrium, “activated” protein configuration. We report evidence for this proposal in measurements on (i) mixed-metal hemoglobin hybrids, (ii) the complex between cytochrome c peroxidase and cytochrome c, and (iii and iv) the complexes of myoglobin and isolated hemoglobin α-chains with cytochrome b5. For all three systems, forward and reverse ET does respond differently to modulation of dynamic processes; further, the response to changes in viscosity is different for each system.
机译:我们建议,当最稳定的构型不是反应性最强时,闪光灯诱导的蛋白-蛋白质电子转移(ET)光循环的正向和反向半部应表现出对构型动态相互转换的不同响应,因为反应物存在于不同的初始构型中:闪光灯光引发的正向ET过程始于蛋白质配偶体处于平衡结构中,其中许多具有很少或没有反应性,而热背ET的反应物(电荷分离的中间体)在非平衡状态下形成, “激活的”蛋白质构型。我们在以下方面的测量中报告了该建议的证据:(i)混合金属血红蛋白杂化物,(ii)细胞色素c过氧化物酶和细胞色素c之间的复合物,以及(iii和iv)肌红蛋白和分离的血红蛋白α链与细胞色素b5的复合物。对于所有三个系统,正向和反向ET对动态过程的调制的响应都不同。此外,每个系统对粘度变化的响应也不同。

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