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Exploring the Enantioselective Mechanism of Halohydrin Dehalogenase from Agrobacterium radiobacter AD1 by Iterative Saturation Mutagenesis

机译:迭代饱和诱变探索农杆菌AD1中卤代醇脱卤酶的对映选择性机理

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Halohydrin dehalogenase from Agrobacterium radiobacter AD1 (HheC) shows great potential in producing valuable chiral epoxides and β-substituted alcohols. The wild-type (WT) enzyme displays a high R -enantiopreference toward most aromatic substrates, whereas no S -selective HheC has been reported to date. To obtain more enantioselective enzymes, seven noncatalytic active-site residues were subjected to iterative saturation mutagenesis (ISM). After two rounds of screening aspects of both activity and enantioselectivity ( E ), three outstanding mutants (Thr134Val/Leu142Met, Leu142Phe/Asn176His, and Pro84Val/Phe86Pro/Thr134Ala/Asn176Ala mutants) with divergent enantioselectivity were obtained. The two double mutants displayed approximately 2-fold improvement in R -enantioselectivity toward 2-chloro-1-phenylethanol (2-CPE) without a significant loss of enzyme activity compared with the WT enzyme. Strikingly, the Pro84Val/Phe86Pro/Thr134Ala/Asn176Ala mutant showed an inverted enantioselectivity (from an E_(R) of 65 [WT] to an E_(S) of 101) and approximately 100-fold-enhanced catalytic efficiency toward ( S )-2-CPE. Molecular dynamic simulation and docking analysis revealed that the phenyl side chain of ( S )-2-CPE bound at a different location than that of its R -counterpart; those mutations generated extra connections for the binding of the favored enantiomer, while the eliminated connections reduced binding of the nonfavored enantiomer, all of which could contribute to the observed inverted enantiopreference.
机译:来自放射线土壤杆菌AD1(HheC)的卤代醇脱卤酶在生产有价值的手性环氧化物和β-取代的醇方面显示出巨大潜力。野生型(WT)酶对大多数芳香族底物表现出较高的R-对映体偏好性,而迄今为止尚未报道过S-选择性HheC。为了获得更多的对映选择性酶,对七个非催化活性位点残基进行了迭代饱和诱变(ISM)。在对活性和对映选择性(E)进行了两轮筛选后,获得了三个具有不同对映选择性的杰出突变体(Thr134Val / Leu142Met,Leu142Phe / Asn176His和Pro84Val / Phe86Pro / Thr134Ala / Asn176Ala突变体)。与WT酶相比,两个双突变体显示出对2-氯-1-苯基乙醇(2-CPE)的R-对映体选择性提高了约2倍,而酶活性没有明显损失。令人惊讶的是,Pro84Val / Phe86Pro / Thr134Ala / Asn176Ala突变体显示对映选择性(从65 [WT]的E_(S)到101的E_(S)),对(S)-的催化效率提高了约100倍。 2-CPE。分子动力学模拟和对接分析表明,(S)-2-CPE的苯基侧链与R对应的位置不同。这些突变产生了与有利的对映异构体结合的额外连接,而消除的连接降低了非有利的对映异构体的结合,所有这些都可能导致观察到的对映体不对称。

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