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古菌“嗜酸铁原体”中的抗砷性:对ars基因结构与进化的新见解

Arsenic resistance in the archaeon "Ferroplasma acidarmanus": new insights into the structure and evolution of the ars genes.

作者信息

Gihring Thomas M, Bond Philip L, Peters Stephen C, Banfield Jillian F

机构信息

Department of Geology and Geophysics, The University of Wisconsin Madison, Madison, Wisconsin, USA.

出版信息

Extremophiles. 2003 Apr;7(2):123-30. doi: 10.1007/s00792-002-0303-6. Epub 2003 Jan 16.

Abstract

Arsenic resistance in the acidophilic iron-oxidizing archaeon " Ferroplasma acidarmanus" was investigated. F. acidarmanus is native to arsenic-rich environments, and culturing experiments confirm a high level of resistance to both arsenite and arsenate. Analyses of the complete genome revealed protein-encoding regions related to known arsenic-resistance genes. Genes encoding for ArsR (arsenite-sensitive regulator) and ArsB (arsenite-efflux pump) homologues were found located on a single operon. A gene encoding for an ArsA relative (anion-translocating ATPase) located apart from the arsRB operon was also identified. Arsenate-resistance genes encoding for proteins homologous to the arsenate reductase ArsC and the phosphate-specific transporter Pst were not found, indicating that additional unknown arsenic-resistance genes exist for arsenate tolerance. Phylogenetic analyses of ArsA-related proteins suggest separate evolutionary lines for these proteins and offer new insights into the formation of the arsA gene. The ArsB-homologous protein of F. acidarmanus had a high degree of similarity to known ArsB proteins. An evolutionary analysis of ArsB homologues across a number of species indicated a clear relationship in close agreement with 16S rRNA evolutionary lines. These results support a hypothesis of arsenic resistance developing early in the evolution of life.

摘要

对嗜酸铁氧化古菌“嗜酸嗜铁菌(Ferroplasma acidarmanus)”的抗砷性进行了研究。嗜酸嗜铁菌原产于富含砷的环境,培养实验证实其对亚砷酸盐和砷酸盐均具有高度抗性。对其完整基因组的分析揭示了与已知抗砷基因相关的蛋白质编码区域。发现编码ArsR(亚砷酸盐敏感调节因子)和ArsB(亚砷酸盐外排泵)同源物的基因位于一个单一操纵子上。还鉴定出一个与ArsA相关的基因(阴离子转运ATP酶),它与arsRB操纵子位于不同位置。未发现编码与砷酸盐还原酶ArsC和磷酸盐特异性转运蛋白Pst同源的蛋白质的抗砷酸盐基因,这表明存在其他未知的抗砷酸盐基因以实现对砷酸盐的耐受。对与ArsA相关蛋白质的系统发育分析表明这些蛋白质有不同的进化谱系,并为arsA基因的形成提供了新的见解。嗜酸嗜铁菌的ArsB同源蛋白与已知的ArsB蛋白具有高度相似性。对多个物种中ArsB同源物的进化分析表明,其与16S rRNA进化谱系密切相关,存在明确的关系。这些结果支持了抗砷性在生命进化早期就已发展的假说。

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