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Mercury Reduction and Methyl Mercury Degradation by the Soil Bacterium Xanthobacter autotrophicus Py2

机译:土壤细菌黄萎病自养细菌Py2的汞还原和甲基汞降解

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Two previously uncharacterized potential broad-spectrum mercury (Hg) resistance operons ( mer ) are present on the chromosome of the soil Alphaproteobacteria Xanthobacter autotrophicus Py2. These operons, mer1 and mer2 , contain two features which are commonly found in mer operons in the genomes of soil and marine Alphaproteobacteria , but are not present in previously characterized mer operons: a gene for the mercuric reductase (MerA) that encodes an alkylmercury lyase domain typical of those found on the MerB protein, and the presence of an additional gene, which we are calling merK , with homology to glutathione reductase. Here, we demonstrate that Py2 is resistant to 0.2 μM inorganic mercury [Hg(II)] and 0.05 μM methylmercury (MeHg). Py2 is capable of converting MeHg and Hg(II) to elemental mercury [Hg(0)], and reduction of Hg(II) is induced by incubation in sub toxic concentrations of Hg(II). Transcription of the merA genes increased with Hg(II) treatment, and in both operons merK resides on the same polycistronic mRNA as merA . We propose the use of Py2 as a model system for studying the contribution of mer to Hg mobility in soil and marine ecosystems.
机译:土壤Alphaproteobacteria Xanthobacter autotrophicus Py2的染色体上存在两个以前未表征的潜在的广谱汞(Hg)抗性操纵子(mer)。这些操纵子mer1和mer2包含两个特征,这些特征通常在土壤和海洋Alteproteobacteria基因组中的mer操纵子中发现,但在先前表征的mer操纵子中不存在:汞还原酶(MerA)的基因,其编码烷基汞裂解酶。常见于MerB蛋白上的结构域,以及与谷胱甘肽还原酶具有同源性的另外一个基因(我们称为merK)的存在。在这里,我们证明Py2对0.2μM无机汞[Hg(II)]和0.05μM甲基汞(MeHg)具有抗性。 Py2能够将MeHg和Hg(II)转换为元素汞[Hg(0)],并且可以通过在亚毒性浓度的Hg(II)中孵育来诱导Hg(II)还原。 merA基因的转录随Hg(II)处理而增加,并且在两个操纵子中merK与merA驻留在相同的多顺反子mRNA上。我们建议使用Py2作为模型系统来研究mer对土壤和海洋生态系统中汞迁移的贡献。

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