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Arsenic Methylation and Volatilization by Arsenite S-Adenosylmethionine Methyltransferase in Pseudomonas alcaligenes NBRC14159

机译:产碱假单胞菌NBRC14159中亚砷酸S-腺苷甲硫氨酸甲基转移酶的砷甲基化和挥发

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Inorganic arsenic (As) is highly toxic and ubiquitous in the environment. Inorganic As can be transformed by microbial methylation, which constitutes an important part of the As biogeochemical cycle. In this study, we investigated As biotransformation by Pseudomonas alcaligenes NBRC14159. P. alcaligenes was able to methylate arsenite [As(III)] rapidly to dimethylarsenate and small amounts of trimethylarsenic oxide. An arsenite S -adenosylmethionine methyltransferase, PaArsM, was identified and functionally characterized. PaArsM shares low similarities with other reported ArsM enzymes (<55%). When P. alcaligenes arsM gene ( PaarsM ) was disrupted, the mutant lost As methylation ability and became more sensitive to As(III). PaarsM was expressed in the absence of As(III) and the expression was further enhanced by As(III) exposure. Heterologous expression of PaarsM in an As-hypersensitive strain of Escherichia coli conferred As(III) resistance. Purified PaArsM protein methylated As(III) to dimethylarsenate as the main product in the medium and also produced dimethylarsine and trimethylarsine gases. We propose that PaArsM plays a role in As methylation and detoxification of As(III) and could be exploited in bioremediation of As-contaminated environments.
机译:无机砷(As)在环境中具有剧毒且无处不在。无机砷可以通过微生物甲基化转化,这是砷生物地球化学循环的重要组成部分。在这项研究中,我们调查了产碱假单胞菌NBRC14159的生物转化。产碱假单胞菌能够将亚砷酸盐[As(III)]快速甲基化为二甲基砷酸盐和少量的三甲基氧化砷。鉴定了亚砷酸S-腺苷甲硫氨酸甲基转移酶PaArsM并对其功能进行了表征。 PaArsM与其他报道的ArsM酶的相似性很低(<55%)。当产碱假单胞菌arsM基因(PaarsM)被破坏时,该突变体失去了As甲基化能力,并对As(III)变得更加敏感。 PaarsM在不存在As(III)的情况下表达,并且通过As(III)的暴露进一步增强了表达。 PaarsM在大肠杆菌的超敏感菌株中的异源表达赋予了As(III)耐药性。纯化的PaArsM蛋白将As(III)甲基化为砷酸二甲酯,作为培养基中的主要产物,还产生了二甲基ar和三甲基ar气体。我们建议PaArsM在As(III)的As甲基化和解毒中发挥作用,并可以在As污染环境的生物修复中加以利用。

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