首页> 外文期刊>Journal of Computer-Aided Molecular Design >Mechanism of enhanced conversion of 1,2,3-trichloropropane by mutant haloalkane dehalogenase revealed by molecular modeling
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Mechanism of enhanced conversion of 1,2,3-trichloropropane by mutant haloalkane dehalogenase revealed by molecular modeling

机译:分子建模揭示了卤代烷脱卤酶促进1,2,3-三氯丙烷转化的机理

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摘要

1,2,3-Trichloropropane (TCP) is a highly toxic, recalcitrant byproduct of epichlorohydrin manufacture. Haloalkane dehalogenase (DhaA) from Rhodococcus sp. hydrolyses the carbon–halogen bond in various halogenated compounds including TCP, but with low efficiency (k cat/K m = 36 s-1 M-1). A Cys176Tyr-DhaA mutant with a threefold higher catalytic efficiency for TCP dehalogenation has been previously obtained by error-prone PCR. We have used molecular simulations and quantum mechanical calculations to elucidate the molecular mechanisms involved in the improved catalysis of the mutant, and enantioselectivity of DhaA toward TCP. The Cys176Tyr mutation modifies the protein access and export routes. Substitution of the Cys residue by the bulkier Tyr narrows the upper tunnel, making the second tunnel “slot” the preferred route. TCP can adopt two major orientations in the DhaA enzyme, in one of which the halide-stabilizing residue Asn41 forms a hydrogen bond with the terminal halogen atom of the TCP molecule, while in the other it bonds with the central halogen atom. The differences in these binding patterns explain the preferential formation of the (R)- over the (S)-enantiomer of 2,3-dichloropropane-1-ol in the reaction catalyzed by the enzyme.
机译:1,2,3-三氯丙烷(TCP)是环氧氯丙烷生产中的剧毒副产物。来自红球菌属(Rhodococcus sp。)的卤代烷脱卤酶(DhaA)。水解包括TCP在内的各种卤代化合物中的碳-卤素键,但效率较低(k cat / K m = 36 s-1 M-1 )。先前已经通过易错PCR获得了对TCP脱卤具有三倍高催化效率的Cys176Tyr-DhaA突变体。我们已经使用分子模拟和量子力学计算来阐明与改进的突变体催化有关的分子机制,以及DhaA对TCP的对映选择性。 Cys176Tyr突变修饰了蛋白质的访问和输出途径。较宽泛的Tyr取代了Cys残基,使上部隧道变窄,使第二条隧道“开槽”成为首选路线。 TCP可以在DhaA酶中采用两个主要方向,其中一个稳定卤素的残基Asn41与TCP分子的末端卤素原子形成氢键,而在另一个方向与中央卤素原子键合。这些结合方式的差异解释了在由酶催化的反应中,(R)-优先于2,3-二氯丙烷-1-醇的(S)-对映体。

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