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锌肌红蛋白与细胞色素b(5)之间的动态对接和电子转移

Dynamic docking and electron transfer between Zn-myoglobin and cytochrome b(5).

作者信息

Liang Zhao-Xun, Nocek Judith M, Huang Kai, Hayes Ryan T, Kurnikov Igor V, Beratan David N, Hoffman Brian M

机构信息

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, USA.

出版信息

J Am Chem Soc. 2002 Jun 19;124(24):6849-59. doi: 10.1021/ja0127032.

Abstract

We present a broad study of the effect of neutralizing the two negative charges of the Mb propionates on the interaction and electron transfer (ET) between horse Mb and bovine cyt b(5), through use of Zn-substituted Mb (ZnMb, 1) to study the photoinitiated reaction, ((3)ZnP)Mb + Fe(3+)cyt b(5) --> (ZnP)(+)Mb + Fe(2+)cyt b(5). The charge neutralization has been carried out both by replacing the Mb heme with zinc-deuteroporphyrin dimethylester (ZnMb(dme), 2), which replaces the charges by small neutral hydrophobic patches, and also by replacement with the newly prepared zinc-deuteroporphyrin diamide (ZnMb(diamide), 3), which converts the charged groups to neutral, hydrophilic ones. The effect of propionate neutralization on the conformation of the zinc-porphyrin in the Mb heme pocket has been studied by multinuclear NMR with an (15)N labeled zinc porphyrin derivative (ZnMb((15)N-diamide), 4). The rates of photoinitiated ET between the Mb's (1-3) and cyt b(5) have been measured over a range of pH values and ionic strengths. Isothermal titration calorimetry (ITC) and NMR methods have been used to independently investigate the effect of charge neutralization on Mb/b(5) binding. The neutralization of the two heme propionates of ZnMb by formation of the heme diester or, for the first time, the diamide increases the second-order rate constant of the ET reaction between ZnMb and cyt b(5) by as much as several 100-fold, depending on pH and ionic strength, while causing negligible changes in binding affinity. Brownian dynamic (BD) simulations and ET pathway calculations provide insight into the protein docking and ET process. The results support a new "dynamic docking" paradigm for protein-protein reactions in which numerous weakly bound conformations of the docked complex contribute to the binding of cyt b(5) to Mb and Hb, but only a very small subset of these are ET active, and this subset does not include the conformations most favorable for binding; the Mb surface is a large "target" with a small "bullseye" for the cyt b(5) "arrow". This paradigm differs sharply from the more familiar, "simple" docking within a single, or narrow range of conformations, where binding strength and ET reactivity increase in parallel. Likewise, it is distinct from, although complementary to, the well-known picture of conformational control of ET through "gating", or a related picture of "conformational coupling". The new model describes situations in which tight binding does not correlate with efficient ET reactivity, and explains how it is possible to modulate reactivity without changing affinity. Such "decoupling" of reactivity from binding clearly is of physiological relevance for the reduction of met-Mb in muscle and of met-Hb in a red cell, where tight binding of cyt b(5) to the high concentration of ferrous-Mb/Hb would prevent the cytochrome from finding and reducing the oxidized proteins; it likely is of physiological relevance in other situations, as well.

摘要

我们通过使用锌取代的肌红蛋白(ZnMb,1)来研究光引发反应((3)ZnP)Mb + Fe(3+)细胞色素b(5) --> (ZnP)(+)Mb + Fe(2+)细胞色素b(5),广泛研究了中和肌红蛋白丙酸酯的两个负电荷对马肌红蛋白与牛细胞色素b(5)之间相互作用和电子转移(ET)的影响。电荷中和通过两种方式实现:一是用锌-去甲卟啉二甲酯(ZnMb(dme),2)取代肌红蛋白血红素,通过小的中性疏水斑块取代电荷;二是用新制备的锌-去甲卟啉二酰胺(ZnMb(diamide),3)取代,将带电基团转化为中性亲水性基团。通过使用(15)N标记的锌卟啉衍生物(ZnMb((15)N - diamide),4)的多核NMR研究了丙酸酯中和对肌红蛋白血红素口袋中锌卟啉构象的影响。在一系列pH值和离子强度范围内测量了肌红蛋白(1 - 3)与细胞色素b(5)之间光引发ET的速率。等温滴定量热法(ITC)和NMR方法已被用于独立研究电荷中和对Mb/b(5)结合的影响。通过形成血红素二酯或首次形成二酰胺来中和ZnMb的两个血红素丙酸酯,可使ZnMb与细胞色素b(5)之间ET反应的二级速率常数增加多达数百倍,这取决于pH值和离子强度,同时引起结合亲和力的可忽略不计的变化。布朗动力学(BD)模拟和ET途径计算为蛋白质对接和ET过程提供了深入了解。结果支持了一种新的蛋白质 - 蛋白质反应“动态对接”范式,其中对接复合物的众多弱结合构象有助于细胞色素b(5)与肌红蛋白和血红蛋白的结合,但其中只有非常小的一部分具有ET活性,并且这个子集不包括最有利于结合的构象;肌红蛋白表面对于细胞色素b(5)“箭头”来说是一个大的“目标”,只有一个小的“靶心”。这种范式与更熟悉的在单一或狭窄构象范围内的“简单”对接有很大不同,在简单对接中,结合强度和ET反应性并行增加。同样,它与通过“门控”进行ET的构象控制的著名图景不同,尽管与之互补,也与“构象耦合”的相关图景不同。新模型描述了紧密结合与高效ET反应性不相关的情况,并解释了如何在不改变亲和力的情况下调节反应性。反应性与结合的这种“解耦”显然在生理上与肌肉中高铁肌红蛋白的还原以及红细胞中高铁血红蛋白的还原相关,在这些情况下,细胞色素b(5)与高浓度的亚铁肌红蛋白/血红蛋白的紧密结合会阻止细胞色素找到并还原氧化的蛋白质;它在其他情况下可能也具有生理相关性。

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