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Stepwise enhancement of catalytic performance of haloalkane dehalogenase LinB towards β-hexachlorocyclohexane

机译:逐步增强卤代烷脱卤酶LinB对β-六氯环己烷的催化性能

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摘要

Two haloalkane dehalogenases, LinBUT and LinBMI, each with 296 amino acid residues, exhibit only seven amino acid residue differences between them, but LinBMI’s catalytic performance towards β-hexachlorocyclohexane (β-HCH) is considerably higher than LinBUT’s. To elucidate the molecular basis governing this difference, intermediate mutants between LinBUT and LinBMI were constructed and kinetically characterized. The activities of LinBUT-based mutants gradually increased by cumulative mutations into LinBUT, and the effects of the individual amino acid substitutions depended on combination with other mutations. These results indicated that LinBUT’s β-HCH degradation activity can be enhanced in a stepwise manner by the accumulation of point mutations.
机译:两种卤代烷脱卤酶LinBUT和LinBMI各自具有296个氨基酸残基,它们之间仅表现出七个氨基酸残基差异,但是LinBMI对β-六氯环己烷(β-HCH)的催化性能明显高于LinBUT。为了阐明控制这种差异的分子基础,构建了LinBUT和LinBMI之间的中间突变体并对其进行了动力学表征。基于LinBUT的突变体的活性通过累积突变成LinBUT而逐渐增加,并且各个氨基酸取代的作用取决于与其他突变的组合。这些结果表明,通过点突变的积累,LinBUT的β-六氯环己烷降解活性可以逐步提高。

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