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Genetic analysis of a stress response that protects the bacterium Pseudomonas aeruginosa from aminoglycoside antibiotics.

机译:保护铜绿假单胞菌免受氨基糖苷类抗生素侵害的应激反应的遗传分析。

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摘要

As the need for new antibiotic therapies grows, it is increasingly important to understand how bacteria protect themselves from antibiotics. Comprehensive genomic screens have revealed functions whose role in antibiotic resistance was previously unknown. These functions can potentially be exploited by drug therapies to enhance antibiotic action. This work investigates genes in the pathogen Pseudomonas aeruginosa responsible for intrinsic resistance to aminoglycosides, a valuable class of antibiotics for treating lung infections. It focuses on an uncharacterized transcriptional regulator (AmgRS) that controls a major resistance mechanism. Transcriptional and mutational analyses are used to investigate the mechanism of resistance. We hypothesize that AmgRS protects cells from aminoglycoside-induced stress by inducing protective functions, and a group of AmgRS-regulated genes are identified, consisting of candidate resistance genes. Genetic dissection of this regulon implicates three functions that operate in a partially redundant manner to provide AmgRS-mediated aminoglycoside resistance. The findings indicate that proteolysis at the cytoplasmic membrane is a primary function of the AmgRS response. We suggest that its role in aminoglycoside resistance is to protect the membrane from mistranslated proteins whose production is induced by aminoglycoside treatment. A general role in protecting the membrane from stress is indicated by the pleiotropic phenotype of amgRS mutants.
机译:随着对新抗生素疗法的需求的增长,了解细菌如何保护自己免受抗生素的侵害越来越重要。全面的基因组筛选已揭示了其在抗生素抗性中的作用以前未知的功能。药物疗法可潜在地利用这些功能来增强抗生素作用。这项工作研究了病原性铜绿假单胞菌中对氨基糖苷具有内在抗性的基因,氨基糖苷是治疗肺部感染的一种有价值的抗生素。它着重于控制主要抗性机制的未知转录调节因子(AmgRS)。转录和突变分析用于研究抗药性的机制。我们假设AmgRS通过诱导保护功能保护细胞免受氨基糖苷诱导的应激,并鉴定出一组由候选抗性基因组成的AmgRS调控基因。该调节子的遗传解剖涉及三个功能,这些功能以部分冗余的方式提供AmgRS介导的氨基糖苷抗性。这些发现表明在细胞质膜上的蛋白水解是AmgRS反应的主要功能。我们建议其在氨基糖苷抗性中的作用是保护膜免受由氨基糖苷处理诱导的错误翻译的蛋白质的影响。 amgRS突变体的多效性表型表明了保护膜免受压力的一般作用。

著录项

  • 作者

    Hinz, Aaron.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Biology Genetics.;Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 94 p.
  • 总页数 94
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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