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Crystal Structure and Site-Directed Mutagenesis Analyses of Haloalkane Dehalogenase LinB from Sphingobium sp. Strain MI1205

机译:鞘氨醇单孢菌的卤代烷脱卤酶LinB的晶体结构和定点诱变分析。菌株MI1205

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摘要

The enzymes LinBUT and LinBMI (LinB from Sphingobium japonicum UT26 and Sphingobium sp. MI1205, respectively) catalyze the hydrolytic dechlorination of β-hexachlorocyclohexane (β-HCH) and yield different products, 2,3,4,5,6-pentachlorocyclohexanol (PCHL) and 2,3,5,6-tetrachlorocyclohexane-1,4-diol (TCDL), respectively, despite their 98% identity in amino acid sequence. To reveal the structural basis of their different enzymatic properties, we performed site-directed mutagenesis and X-ray crystallographic studies of LinBMI and its seven point mutants. The mutation analysis revealed that the seven amino acid residues uniquely found in LinBMI were categorized into three groups based on the efficiency of the first-step (from β-HCH to PCHL) and second-step (from PCHL to TCDL) conversions. Crystal structure analyses of wild-type LinBMI and its seven point mutants indicated how each mutated residue contributed to the first- and second-step conversions by LinBMI. The dynamics simulation analyses of wild-type LinBMI and LinBUT revealed that the entrance of the substrate access tunnel of LinBUT was more flexible than that of LinBMI, which could lead to the different efficiencies of dehalogenation activity between these dehalogenases.
机译:LinBUT和LinBMI酶(分别来自日本鞘氨醇UT26和鞘氨醇单胞菌MI1205的LinB)催化β-六氯环己烷(β-HCH)的水解脱氯,并生成不同的产物2,3,4,5,6-五氯环己醇(PCHL )和2,3,5,6-四氯环己烷-1,4-二醇(TCDL),尽管它们在氨基酸序列上具有98%的同一性。为了揭示它们不同酶特性的结构基础,我们对LinBMI及其七个点突变体进行了定点诱变和X射线晶体学研究。突变分析表明,根据第一步(从β-HCH到PCHL)和第二步(从PCHL到TCDL)转化的效率,在LinBMI中唯一发现的七个氨基酸残基可分为三类。野生型LinBMI及其七个点突变体的晶体结构分析表明,每个突变残基如何促进LinBMI进行第一步和第二步转化。对野生型LinBMI和LinBUT的动力学仿真分析表明,LinBUT的底物通道的入口比LinBMI的入口更灵活,这可能导致这些脱卤酶之间的脱卤活性效率不同。

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