首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Density Functional Theory Insights into the Role of the Methionine-Tyrosine-Tryptophan Adduct Radical in the KatG Catalase Reaction: O-2 Release from the Oxyheme Intermediate
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Density Functional Theory Insights into the Role of the Methionine-Tyrosine-Tryptophan Adduct Radical in the KatG Catalase Reaction: O-2 Release from the Oxyheme Intermediate

机译:密度泛函理论洞察蛋氨酸-酪氨酸-色氨酸加合物自由基在KatG过氧化氢酶反应中的作用:从氧合酶中间体释放O-2

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摘要

Density functional theory was employed for a comprehensive study that provided electronic and structural insights into the KatG catalase reaction that involves oxyheme. The catalytic role of a unique amino acid cofactor Met-Tyr-Trp (MYW) in its radical form found in KatG was thereby elucidated. It was established that the MYW-radical is flexible such that a "hinge-like opening" rotation of the Trp-107 ring with respect to the Tyr-229 ring along their covalent C-C bond is an inherent feature of its catalytic properties. Also, an H-bond between the Tyr-229 and the mobile side chain of Arg-418 further enables the catalytic events. The opening process breaks an H-bond between the N-H of Trp-107 and the inner oxygen of the Fe-O-2 (oxyheme) complex present in the closed conformation of the MYW-radical. This motion lowers the spin-crossing energy barrier between the ground state and the catalytically active high-spin states and,enables electron transfer from the oxyheme group to the MYW-radical. The release of molecular oxygen is thereby catalyzed and leaves ferric-heme poised for another catalytic cycle. The energy barrier for the oxyheme state to complete the catalytic event, when assisted by the radical opening process, is thereby reduced and estimated to be 5.6 kcal/mol.
机译:密度泛函理论用于全面研究,为涉及氧合血红素的KatG过氧化氢酶反应提供了电子和结构方面的见识。从而阐明了在KatG中发现的独特的氨基酸辅助因子Met-Tyr-Trp(MYW)的自由基形式的催化作用。已经确定MYW自由基是柔性的,使得Trp-107环相对于Tyr-229环沿着它们的共价C-C键的“铰链状打开”旋转是其催化性质的固有特征。而且,Tyr-229和Arg-418的移动侧链之间的H键进一步实现了催化作用。打开过程破坏了Trp-107的N-H与MYW自由基闭环构型中的Fe-O-2(氧合血红素)配合物的内部氧之间的氢键。该运动降低了基态与催化活性高自旋态之间的自旋交叉能垒,并使电子能够从氧合血红素基团转移至MYW自由基。由此催化了分子氧的释放,并使铁血红素保持平衡以进行另一个催化循环。因此,在自由基打开过程的辅助下,氧合血红素状态完成催化作用的能垒降低,估计为5.6 kcal / mol。

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