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首页> 外文期刊>Environmental microbiology >The peptide chain release factor methyltransferase PrmC is essential for pathogenicity and environmental adaptation of Pseudomonas aeruginosa PA14
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The peptide chain release factor methyltransferase PrmC is essential for pathogenicity and environmental adaptation of Pseudomonas aeruginosa PA14

机译:肽链释放因子甲基转移酶PrmC对于铜绿假单胞菌PA14的致病性和环境适应性至关重要

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摘要

Pseudomonas aeruginosa pathogenicity and its capability to adapt to multiple environments are dependent on the production of diverse virulence factors, controlled by the sophisticated quorum sensing (QS) network of P.aeruginosa. To better understand the molecular mechanisms that underlie this adaptation we searched for novel key regulators of virulence factor production by screening a PA14 transposon mutant library for potential candidates acting downstream of the unique 2-alkyl-4-quinolone (AQ) QS system of P.aeruginosa. We focused the work on a protein named HemK with high homology to PrmC of Escherichia coli displaying a similar enzymatic activity (therefore also referred to as PrmC). In this study, we demonstrate that PrmC is an S-adenosyl-l-methionine (AdoMet)-dependent methyltransferase of peptide chain release factors (RFs) essential for the expression of several virulence factors, such as pyocyanin, rhamnolipids and the type III-secreted toxin ExoT. Furthermore, the PA14_prmC mutant strain is unable to grow under anoxic conditions and has a significantly reduced pathogenicity in the infection model Galleria mellonella. Along with transcriptomic and proteomic analyses, the presented data indicate that the methylation of RFs in P.aeruginosa seems to have a global effect on cellular processes related to the virulence of this nosocomial pathogen.
机译:铜绿假单胞菌的致病性及其适应多种环境的能力取决于由铜绿假单胞菌的复杂群体感应(QS)网络控制的多种毒力因子的产生。为了更好地了解这种适应的分子机制,我们通过筛选PA14转座子突变体文库寻找在P的独特2-烷基-4-喹诺酮(AQ)QS系统下游起作用的潜在候选物,寻找了毒力因子产生的新型关键调节剂。铜绿。我们将研究重点放在了一种名为HemK的蛋白上,该蛋白与大肠杆菌的PrmC具有高度的同源性,显示出相似的酶活性(因此也称为PrmC)。在这项研究中,我们证明PrmC是肽链释放因子(RFs)的S-腺苷-1-蛋氨酸(AdoMet)依赖性甲基转移酶,对于表达几种毒力因子(如花青素,鼠李糖脂和III-型)至关重要分泌毒素ExoT。此外,PA14_prmC突变株不能在缺氧条件下生长,并且在感染模型圆顶菌廊中具有显着降低的致病性。连同转录组学和蛋白质组学分析,所提供的数据表明,铜绿假单胞菌中RF的甲基化似乎对与这种医院病原体的毒力有关的细胞过程具有全局影响。

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