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首页> 外文期刊>Applied and Environmental Microbiology >Novel LinA Type 3 δ-Hexachlorocyclohexane Dehydrochlorinase
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Novel LinA Type 3 δ-Hexachlorocyclohexane Dehydrochlorinase

机译:新型LinA 3型δ-六氯环己烷脱盐酸酶

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LinA is the first enzyme of the microbial degradation pathway of a chlorinated insecticide, hexachlorocyclohexane (HCH), and mediates the dehydrochlorination of α-, γ-, and δ-HCH. Its two variants, LinA type 1 and LinA type 2, which differ at 10 out of 156 amino acid residues, have been described. Their activities for the metabolism of different HCH isomers differ considerably but overall are high for γ-HCH, moderate for α-HCH, low for δ-HCH, and lacking for β-HCH. Here, we describe the characterization of a new variant of this enzyme, LinA type 3, whose gene was identified from the metagenome of an HCH-contaminated soil sample. Its deduced primary structure in the region spanning amino acid residues 1 to 147 of the protein exhibits 17 and 12 differences from LinA type 1 and LinA type 2, respectively. In addition, the residues GIHFAPS, present at the region spanning residues 148 to 154 in both LinA type 1 and LinA type 2, are deleted in LinA type 3.The activity of LinA type 3 for the metabolism of δ-HCH is several orders of magnitude higher than that of LinA type 1 or LinA type 2 and can be useful for improvement of the metabolism of δ-HCH.
机译:LinA是氯化杀虫剂六氯环己烷(HCH)的微生物降解途径的第一种酶,可介导α-,γ-和δ-HCH的脱氯化氢作用。已经描述了其两个变体LinA 1型和LinA 2型,它们在156个氨基酸残基中有10个不同。它们对于不同的六氯环己烷异构体的代谢活性差异很大,但总体而言,γ-六氯环己烷高,α-六氯环己烷适中,δ-HCH低,而β-HCH缺乏。在这里,我们描述了这种酶的新变体LinA 3型的特征,该变体的基因是从被六氯环己烷污染的土壤样品的基因组中鉴定出来的。其推导的跨越蛋白质氨基酸残基1至147的区域中的一级结构分别与LinA 1型和LinA 2型分别具有17和12的差异。另外,存在于LinA 1型和LinA 2型的148至154位残基之间的区域中的残基GIHFAPS在LinA 3型中被删除。LinA3型对δ-HCH的代谢活性约为其强度比1型LinA或2型LinA高,可用于改善δ-HCH的代谢。

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