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Influence of the phosphoenolpyruvate:carbohydrate phosphotransferase system on toxin gene expression and virulence in Bacillus anthracis Bacillus anthracis

机译:磷酸丙酮酸:碳水化合物Phosphot ransfase系统对胰蒽芽孢杆菌的毒素基因表达及毒力的影响

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摘要

Summary AtxA, the master virulence gene regulator of Bacillus anthracis , is a PRD‐Containing Virulence Regulator (PCVR) as indicated by the crystal structure, post‐translational modifications and activity of the protein. PCVRs are transcriptional regulators, named for PTS Regulatory Domains (PRDs) subject to phosphorylation by the phosphoenolpyruvate phosphotransferase system (PEP‐PTS) and for their impact on virulence gene expression. Here we present data from experiments employing physiological, genetic and biochemical approaches that support a model in which the PTS proteins HPr and Enzyme I (EI) are required for transcription of the atxA gene, rather than phosphorylation of AtxA. We show that atxA transcription is reduced 2.5‐fold in a mutant lacking HPr and EI, and that this change is sufficient to affect anthrax toxin production. Mutants harboring HPr proteins altered for phosphotransfer activity were unable to restore atxA transcription to parent levels, suggesting that phosphotransfer activity of HPr and EI is important for regulation of atxA . In a mouse model for anthrax, a HPr – EI – mutant was attenuated for virulence. Virulence was restored by expressing atxA from an alternative, PTS‐independent, promoter. Our data support a model in which HPr transfers a phosphate to an unidentified downstream transcriptional regulator to influence atxA gene transcription.
机译:概述ATXA,芽孢杆菌的主体毒力基因调节剂是含PRD毒力调节剂(PCVR),如晶体结构,翻译后修饰和蛋白质的活性所示。 PCVR是转录调节剂,以磷酸丙酯磷酸磷酸磷酸酯酶(PEP-PTS)对PTS调节结构域(PRD)命名为PTS调节结构域(PRD),并对毒力基因表达的影响。在这里,我们从使用支持的模型的实验中呈现来自使用的生理,遗传和生物化学方法,其中需要PTS蛋白HPR和酶I(EI)来转录ATXA基因,而不是ATXA的磷酸化。我们表明ATXA转录在缺乏HPR和EI的突变体中减少了2.5倍,并且这种变化足以影响炭疽毒素的产生。对磷酸替代活性改变的HPR蛋白质的突变体无法将ATXA转录恢复到亲本水平,这表明HPR和EI的磷光酯剂活性对于ATXA的调节是重要的。在炭疽的小鼠模型中,衰减HPR - ei-突变体用于毒力。通过从替代,拟PTS的促进者表达ATXA来恢复毒力。我们的数据支持一种模型,其中HPR将磷酸盐转移到未识别的下游转录调节剂以影响ATXA基因转录。

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  • 来源
    《Molecular Microbiology》 |2020年第1期|共15页
  • 作者单位

    Department of Microbiology and Molecular GeneticsMcGovern Medical School of the University of Texas;

    Department of Microbiology and Molecular GeneticsMcGovern Medical School of the University of Texas;

    Department of Microbiology and Molecular GeneticsMcGovern Medical School of the University of Texas;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
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