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Involvement of MexR in the transcriptional regulation of MexAB-OprM, a multidrug efflux system in Pseudomonas aeruginosa.

机译:MexR参与铜绿假单胞菌的多药外排系统MexAB-OprM的转录调控。

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摘要

Pseudomonas aeruginosa is a significant opportunistic pathogen known for high intrinsic resistance to multiple antibiotics. This resistance is attributable to low outer membrane permeability and multidrug efflux pumps. P. aeruginosa possesses four known efflux pumps, and several others are predicted within the genome sequence by homology. These tripartite efflux pumps include an inner membrane transporter and an outer membrane channel linked by a periplasmic protein. The efflux pumps are encoded by the mexAB-oprM, mexCD-oprJ, mexEF-oprN, and mexXY operons. The objective of this thesis is to demonstrate the regulatory role of MexR on the expression of mexAB-oprM. MexR is proposed to be a repressor of the mexAB-oprM operon based on the homology of the deduced mexR product to a number of repressor proteins and the genetic proximity of mexR to the mexAB-oprM operon. MexAB-OprM is shown to be growth-phase regulated, with expression of mexAB-oprM increasing to a maximum in the mid to late log phase. LasR, AlgU/T, RpoN, and MexR are not responsible for the growth-phase dependent regulation of mexAB-oprM expression. Inactivation of mexR increased expression of both a mexA and mexR reporter fusion, indicating that MexR is a negative regulator of both genes. As a regulatory protein, MexR is proposed to bind to the mexR-mexA intergenic region in the vicinity of the putative mexAB-oprM and mexR promoters. MexR was purified as a C-terminal histidine tagged protein. The DNA-binding activity of the purified MexR-his protein was demonstrated using a gel shift assay and DNase I footprinting. Two MexR-binding sites (site I & II), 28 bp in size were separated by 3 bp and occurred 189 bp upstream of mexA (from the 3 end of site I to the translational start site of mexA) and 25 bp upstream of mexR (from the 3 end of site II to the translational start of mexR). MexR-binding site I is downstream of a second putative promoter for mexA (which occurs approximately 120 bp upstream of the originally proposed mexA promoter), whereas site II is downstream of the mexR promoter. In the same position within each binding site, the sequence GTTGA was repeated in an inverse orientation separated by 4 bp. The presence of two mexA promoters, of which only one contains a MexR binding site, and growth-phase dependent expression suggests that MexR is not the sole regulator of mexAB-oprM. The regulation of mexAB-oprM is proposed to involve a complicated network of regulators.
机译:铜绿假单胞菌是一种重要的机会性病原体,对多种抗生素具有高度固有的耐药性。该阻力归因于低的外膜渗透性和多药外排泵。 <斜体> P。铜绿假单胞菌具有四个已知的外排泵,通过同源性在基因组序列中预测了其他几个。这些三方外排泵包括通过周质蛋白连接的内膜转运蛋白和外膜通道。外排泵由 mexAB-oprM,mexCD-oprJ,mexEF-oprN mexXY 操纵子编码。本文的目的是证明MexR对 mexAB-oprM 表达的调控作用。基于推导的 mexR 产物与多种阻遏蛋白的同源性和的遗传亲和力,MexR被提议为 mexAB-oprM 操纵子的阻遏物。 mexR mexAB-oprM 操纵子。 MexAB-OprM被证明是受生长期调控的, mexAB-oprM 的表达在对数中期到后期增加到最大值。 LasR,AlgU / T,RpoN和MexR对 mexAB-oprM 表达的生长阶段依赖性调节不负责。 mexR的失活增加了 mexA mexR 报告基因融合体的表达,表明MexR是这两个基因的负调控因子。作为调节蛋白,MexR被提议与假定的 mexAB-oprM mexR 启动子附近的 mexR-mexA 基因间区域结合。 。 MexR纯化为C端组氨酸标记的蛋白。纯化的MexR-his蛋白的DNA结合活性已通过凝胶位移测定和DNase I足迹进行了证明。两个MexR结合位点(位点I和II),大小分别为28 bp,相距3 bp,出现在 mexA 上游(从位点3 '端)的189 bp处I到 mexA 的翻译起始位点,和 mexR 的上游25 bp(从II位点的3 '末端到的翻译起始)。 mexR )。 MexR结合位点I在 mexA 的第二个推定启动子的下游(发生在最初提出的 mexA 启动子的上游约120 bp处),而位点II在该表达子的下游。 mexR 启动子。在每个结合位点的相同位置,以反向方向重复4 bp的顺序重复序列GTTGA。存在两个 mexA 启动子,其中只有一个包含一个MexR结合位点,并且生长阶段依赖性表达表明MexR不是 mexAB-oprM 的唯一调节剂。建议 mexAB-oprM 的监管涉及复杂的监管机构网络。

著录项

  • 作者

    Evans, Kelly Laura.;

  • 作者单位

    Queen's University at Kingston (Canada).;

  • 授予单位 Queen's University at Kingston (Canada).;
  • 学科 Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
  • 关键词

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