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Involvement of a putative molybdenum enzyme in the reduction of selenate by Escherichia coli

机译:推定钼酶参与大肠杆菌减少硒酸盐

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Selenium oxyanions, particularly selenite, can be highly toxic to living organisms. Few bacteria reduce both selenate and selenite into the less toxic elemental selenium. Insights into the mechanisms of the transport and the reduction of selenium oxyanions in Escherichia coli were provided by a genetic analysis based on transposon mutagenesis. Ten mutants impaired in selenate reduction were analysed. Three of them were altered in genes encoding transport proteins including a porin, an inner-membrane protein and a sulfate carrier. Two mutants were altered in genes required for molybdopterin biosynthesis, strongly suggesting that the selenate reductase of E. coli is a molybdoenzyme. However, mutants deleted in various oxomolybdenum enzymes described so far in this species still reduced selenate. Finally, a mutant in the gene ygfK encoding a putative oxidoreductase was obtained. This gene is located upstream of ygfN and ygfM in the ygfKLMN putative operon. YgfN and YgfM code for a molybdopterin-containing enzyme and a polypeptide carrying a FAD domain, respectively. It is therefore proposed that the selenate reductase of E. coli is a structural complex including the proteins YgfK, YgfM and YgfN. In addition, all the various mutants were still able to reduce selenite into elemental selenium. This implies that the transport and reduction of this compound are clearly distinct from those of selenate.
机译:硒氧气,特别是硒矿,对生物体具有高毒性。少量细菌将硒酸盐和硒酸盐减少到毒性较低的元素硒。通过基于转座子诱变的遗传分析,提供了对大肠杆菌中的运输机制和减少硒氧合的洞察。分析了在硒化物中损害的十个突变体进行了分析。其中三种在编码包括孔隙,内膜蛋白和硫酸载体的转运蛋白质中的基因中改变。在钼生物合成所需的基因中改变了两个突变体,强烈表明大肠杆菌的硒还原酶是钼醛。然而,在该物种中描述的各种氧钼酶中缺失的突变体仍然还会降低硒酸盐。最后,获得编码推定氧化还原酶的基因YGFK中的突变体。该基因位于YGFKLMN推定式操纵子的YGFN和YGFM的上游。 YGFN和YGFM代码分别用于含钼醇酶的酶和携带FAD结构域的多肽。因此,提出了大肠杆菌的硒还原酶是一种结构复合物,包括蛋白质YGFK,YGFM和YGFN。此外,所有各种突变体仍然能够将硒矿石还原成元素硒。这意味着该化合物的运输和减少明显不同于硒酸盐。

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