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首页> 外文期刊>Molecular Microbiology >Novel coordination of lipopolysaccharide modifications in Vibrio cholerae Vibrio cholerae promotes CAMP resistance
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Novel coordination of lipopolysaccharide modifications in Vibrio cholerae Vibrio cholerae promotes CAMP resistance

机译:血栓多糖修饰的新型协调霍乱弧菌霍乱促进营养抵抗力

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摘要

Summary In the environment and during infection, the human intestinal pathogen Vibrio cholerae must overcome noxious compounds that damage the bacterial outer membrane. The El Tor and classical biotypes of O1 V . cholerae show striking differences in their resistance to membrane disrupting cationic antimicrobial peptides (CAMPs), such as polymyxins. The classical biotype is susceptible to CAMPs, but current pandemic El Tor biotype isolates gain CAMP resistance by altering the net charge of their cell surface through glycine modification of lipid A. Here we report a second lipid A modification mechanism that only functions in the V . cholerae El Tor biotype. We identify a functional EptA ortholog responsible for the transfer of the amino‐residue phosphoethanolamine (pEtN) to the lipid A of V . cholerae El Tor that is not functional in the classical biotype. We previously reported that mildly acidic growth conditions (pH 5.8) downregulate expression of genes encoding the glycine modification machinery. In this report, growth at pH 5.8 increases expression of eptA with concomitant pEtN modification suggesting coordinated regulation of these LPS modification systems. Similarly, efficient pEtN lipid A substitution is seen in the absence of lipid A glycinylation. We further demonstrate EptA orthologs from non‐ cholerae Vibrio species are functional.
机译:发明概述在环境和感染期间,人肠道病原体Vibrio Cholerae必须克服损害细菌外膜的有毒化合物。 O1 v的EL TOR和经典生物型。霍乱表明它们对膜抗膜的抗性差异,破坏了阳离子抗菌肽(阵营),例如聚杂环蛋白。经典的生物型易受阵营的影响,但目前的大流行抗体通过通过脂质A的甘氨酸改性改变其细胞表面的净电荷来隔离增益阵营阻力。在这里,我们报告了第二种脂质的改性机制,该方法仅在V中运作。 Cholerae El Tor Biotype。我们鉴定了负责将氨基残基磷乙醇胺(PETN)转移至v的脂质A的功能性EPTA正交。霍乱elor在经典的生物型中不起作用。我们以前报道了温和的酸性生长条件(pH 5.8)下调了编码甘氨酸改性机械的基因的表达。在本报告中,pH 5.8的生长增加了EPTA的表达,伴随彼得改性,表明这些LPS修饰系统的协调调节。类似地,在没有脂质的甘油酯的情况下,可以看到有效的肥脂脂质取代。我们进一步证明了来自非霍乱的ePTA原果蝇是功能性的。

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  • 来源
    《Molecular Microbiology》 |2017年第4期|共15页
  • 作者单位

    Department of Infectious Diseases Center for Vaccines and ImmunologyUniversity of Georgia College;

    Department of Infectious Diseases Center for Vaccines and ImmunologyUniversity of Georgia College;

    Department of Molecular Biosciences Institute for Cellular and Molecular BiologyThe University of;

    Department of Infectious Diseases Center for Vaccines and ImmunologyUniversity of Georgia College;

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

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