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Coupling and uncoupling mechanisms in the methoxythreonine mutant of cytochrome P450cam: a quantum mechanical/molecular mechanical study

机译:细胞色素P450cam的甲氧基苏氨酸突变体中的偶联和解偶联机理:量子力学/分子力学研究

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摘要

The Thr252 residue plays a vital role in the catalytic cycle of cytochrome P450cam during the formation of the active species (Compound I) from its precursor (Compound 0). We investigate the effect of replacing Thr252 by methoxythreonine (MeO-Thr) on this protonation reaction (coupling) and on the competing formation of the ferric resting state and H2O2 (uncoupling) by combined quantum mechanical/molecular mechanical (QM/MM) methods. For each reaction, two possible mechanisms are studied, and for each of these the residues Asp251 and Glu366 are considered as proton sources. The computed QM/MM barriers indicate that uncoupling is unfavorable in the case of the Thr252MeO-Thr mutant, whereas there are two energetically feasible proton transfer pathways for coupling. The corresponding rate-limiting barriers for the formation of Compound I are higher in the mutant than in the wild-type enzyme. These findings are consistent with the experimental observations that the Thr252MeO-Thr mutant forms the alcohol product exclusively (via Compound I), but at lower reaction rates compared with the wild-type enzyme.Electronic supplementary materialThe online version of this article (doi:10.1007/s00775-009-0608-3) contains supplementary material, which is available to authorized users.
机译:Thr252残基在由其前体(化合物0)形成活性物质(化合物I)的过程中,对细胞色素P450cam的催化循环起着至关重要的作用。我们研究了通过甲氧基苏氨酸(MeO-Thr)替代Thr252对该质子化反应(偶联)以及通过组合量子力学/分子机械(QM / MM)方法对铁静止态和H2O2(解偶联)竞争形成的影响。对于每个反应,研究了两种可能的机理,并且对于每个残基,Asp251和Glu366均被视为质子源。计算得出的QM / MM壁垒表明,在Thr252MeO-Thr突变体的情况下,解偶联是不利的,而存在两个在能量上可行的耦合质子传递途径。在突变体中形成化合物I的相应的限速壁垒比在野生型酶中高。这些发现与实验观察结果相符,即Thr252MeO-Thr突变体仅通过化合物I形成醇产物,但与野生型酶相比反应速率较低。电子补充材料本文的在线版本(doi:10.1007) / s00775-009-0608-3)包含补充材料,授权用户可以使用。

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