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Genetics and environmental regulation of Shigella iron transport systems

机译:志贺氏菌铁运输系统的遗传学和环境调控

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摘要

Shigella spp. have transport systems for both ferric and ferrous iron. The iron can be taken up as free iron or complexed to a variety of carriers. All Shigella species have both the Feo and Sit systems for acquisition of ferrous iron, and all have at least one siderophore-mediated system for transport of ferric iron. Several of the transport systems, including Sit, Iuc/IutA (aerobactin synthesis and transport), Fec (ferric di-citrate uptake), and Shu (heme transport) are encoded within pathogenicity islands. The presence and the genomic locations of these islands vary considerably among the Shigella species, and even between isolates of the same species. The expression of the iron transport systems is influenced by the concentration of iron and by environmental conditions including the level of oxygen. ArcA and FNR regulate iron transport gene expression as a function of oxygen tension, with the sit and iuc promoters being highly expressed in aerobic conditions, while the feo ferrous iron transporter promoter is most active under anaerobic conditions. The effects of oxygen are also seen in infection of cultured cells by Shigella flexneri; the Sit and Iuc systems support plaque formation under aerobic conditions, whereas Feo allows plaque formation anaerobically.
机译:志贺氏菌属。有铁和亚铁运输系统。铁可以作为游离铁吸收,也可以与多种载体复合。所有志贺氏菌物种都具有Feo和Sit系统来获取亚铁,并且都具有至少一个铁载体介导的系统来运输三价铁。几种运输系统,包括Sit,Iuc / IutA(航空细菌素合成和运输),Fec(柠檬酸铁的摄取)和Shu(血红素运输),都在致病岛内编码。这些岛的存在和基因组位置在志贺菌属物种之间,甚至在同一物种的分离株之间也有很大差异。铁转运系统的表达受铁浓度和环境条件(包括氧气水平)的影响。 ArcA和FNR根据氧张力调节铁转运基因的表达,sit和iuc启动子在有氧条件下高度表达,而feo亚铁转运蛋白启动子在厌氧条件下活性最高。在弗氏志贺氏菌感染培养的细胞中也可以看到氧气的作用。 Sit和Iuc系统支持有氧条件下的菌斑形成,而Feo允许厌氧菌斑形成。

著录项

  • 来源
    《BioMetals》 |2009年第1期|43-51|共9页
  • 作者单位

    Section of Molecular Genetics and Microbiology Institute for Cellular and Molecular Biology University of Texas Austin TX 78712 USA;

    Section of Molecular Genetics and Microbiology Institute for Cellular and Molecular Biology University of Texas Austin TX 78712 USA;

    Section of Molecular Genetics and Microbiology Institute for Cellular and Molecular Biology University of Texas Austin TX 78712 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Iron transport; Pathogenicity islands; Shigella; Feo; Aerobactin; Sit;

    机译:铁运输;致病性岛;志贺菌;Feo;Aerobactin;Sit;

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