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首页> 外文期刊>Journal of bacteriology >Functional Definition and Global Regulation of Zur, a Zinc Uptake Regulator in a Streptococcus suis Serotype 2 Strain Causing Streptococcal Toxic Shock Syndrome
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Functional Definition and Global Regulation of Zur, a Zinc Uptake Regulator in a Streptococcus suis Serotype 2 Strain Causing Streptococcal Toxic Shock Syndrome

机译:Zur的功能定义和全局调节,Zur是导致链球菌中毒性休克综合征的猪链球菌血清型2菌株中锌的吸收调节剂。

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Zinc is an essential trace element for all living organisms and plays pivotal roles in various cellular processes. However, an excess of zinc is extremely deleterious to cells. Bacteria have evolved complex machineries (such as efflux/influx systems) to control the concentration at levels appropriate for the maintenance of zinc homeostasis in cells and adaptation to the environment. The Zur (zinc uptake regulator) protein is one of these functional members involved in the precise control of zinc homeostasis. Here we identified a zur homologue designated 310 from Streptococcus suis serotype 2, strain 05ZYH33, a highly invasive isolate causing streptococcal toxic shock syndrome. Biochemical analysis revealed that the protein product of gene 310 exists as a dimer form and carries zinc ions. An isogenic gene replacement mutant of gene 310, the Δ310 mutant, was obtained by homologous recombination. Physiological tests demonstrated that the Δ310 mutant is specifically sensitive to Zn2+, while functional complementation of the Δ310 mutant can restore its duration capability, suggesting that 310 is a functional member of the Zur family. Two-dimensional electrophoresis indicated that nine proteins in the Δ310 mutant are overexpressed in comparison with those in the wild type. DNA microarray analyses suggested that 121 genes in the Δ310 mutant are affected, of which 72 genes are upregulated and 49 are downregulated. The transcriptome of S. suis serotype 2 with high Zn2+ concentrations also showed 117 differentially expressed genes, with 71 upregulated and 46 downregulated. Surprisingly, more than 70% of the genes differentially expressed in the Δ310 mutant were the same as those in S. suis serotype 2 that were differentially expressed in response to high Zn2+ concentration, consistent with the notion that 310 is involved in zinc homeostasis. We thus report for the first time a novel zinc-responsive regulator, Zur, from Streptococcus suis serotype 2.
机译:锌是所有生物的必需微量元素,在各种细胞过程中起着关键作用。但是,过量的锌对细胞极为有害。细菌已经进化出复杂的机制(例如外排/流入系统),以将浓度控制在适合维持细胞内锌稳态和适应环境的水平。 Zur(锌吸收调节剂)蛋白是参与锌稳态的精确控制的这些功能成员之一。在这里,我们从猪链球菌2型血清型05ZYH33中鉴定出一个名为310的zur同源物,该菌株是引起链球菌中毒性休克综合症的高度侵入性菌株。生化分析表明,基因310的蛋白质产物以二聚体形式存在并带有锌离子。通过同源重组获得基因310的等基因基因替代突变体Δ310突变体。生理测试表明,Δ310突变体对Zn 2 + 特别敏感,而Δ310突变体的功能互补可以恢复其持续能力,这表明310是Zur家族的功能性成员。二维电泳表明,与野生型相比,Δ310突变体中有9种蛋白过表达。 DNA微阵列分析表明,Δ310突变体中有121个基因受到影响,其中72个基因上调而49个基因下调。 S的转录组。高Zn 2 + 浓度的suis 血清型2也显示117个差异表达基因,其中71个上调而46个下调。令人惊讶地,在Δ310突变体中差异表达的基因中超过70%与 S中的基因相同。 suis 血清型2在高Zn 2 + 浓度下响应差异表达,与310锌稳态相关的观点一致。因此,我们首次报道了猪链球菌血清型2的新型锌响应性调节剂Zur。

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