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首页> 外文期刊>International Journal of Quantum Chemistry >Effect of electrostatic interaction on the mechanism of dehalogenation catalyzed by haloalkane dehalogenase
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Effect of electrostatic interaction on the mechanism of dehalogenation catalyzed by haloalkane dehalogenase

机译:静电相互作用对卤代烷脱卤酶催化脱卤机理的影响

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摘要

Theoretical calculation has been carried out for the nucleophilic displacement reaction of 1,2-dichloroethane catalyzed by haloalkane dehalogenase. The results indicate that different hydrogen bond patterns of the oxyanion hole and the halide-stabilizing residues play an important role in the dehalogenation reaction. They cause concertedly an earlier transition state (TS) with the activation barrier of 16.60 kcal/mol. The stabilization effect of Trp125 and Trp175 on chlorine atom in the TS is larger than that of the reactant complex by 15.67 kcal/mol so that, they make contribution to the stabilization of the TS. Moreover, the reaction shows the enzymatic action can be attributed to a combination of reactant-state destabilization and transition-state electrostatic stabilization.
机译:对卤代烷脱卤酶催化的1,2-二氯乙烷的亲核取代反应进行了理论计算。结果表明,氧阴离子孔和卤化物稳定残基的不同氢键模式在脱卤反应中起重要作用。它们共同引起更早的过渡态(TS),其活化势垒为16.60 kcal / mol。 Trp125和Trp175对TS中氯原子的稳定作用比反应物络合物的稳定作用大15.67 kcal / mol,因此它们对TS的稳定作用做出了贡献。而且,该反应表明酶促作用可以归因于反应物状态去稳定化和过渡态静电稳定化的组合。

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