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Genomic investigation of the role of antibiotics as signal molecules in Pseudomonas aeruginosa

机译:基因组调查抗生素作为假单胞菌铜绿假单胞菌中的信号分子的作用

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Antibiotics have recently been shown to play a role as signaling molecules besides bacterial killing or growth inhibition. To understand antibiotic regulatory networks in bacteria, we investigated Pseudomonas aeruginosa gene expression profiles in response to subinhibitory concentrations of six antibiotics (ampicilin, kanamycin, chloramphenicol, tetracycline, erythromycin, ciprofloxacin) by using a random promoter-luxCDABE reporter fusion library. Both common and unique responses to different antibiotics were observed, suggesting existence of both shared and unique regulatory pathways in P. aeruginosa. Total of 48 promoter clones were selected and further tested. They were regulated at least two-fold by at least one of the antibiotics. Among them, 17 promoters and the genes or operons driven by them activated by at least four antibiotics were identified by sequencing analysis. These genes/operons encode potential transcriptional regulators, components of ABC transporters, or unknown proteins. These results extended our knowledge of the global effect of antibiotics as signal molecules on gene expression, and the potential components of the genetic regulatory networks identified should facilitate further studies.
机译:除了细菌杀伤或生长抑制之外,最近已被证明抗生素在发挥信号分子中发挥作用。为了了解细菌中的抗生素调节网络,我们通过使用随机启动子 - 吕德·记者融合库对六种抗生素(Ampicilin,卡那霉素,氯霉素,四环素,红霉素,环丙沙霉素,四环素,红霉素,环丙沙霉素)进行了伪装铜绿假单胞菌基因表达谱。观察到对不同抗生素的常见和独特的反应,表明在P.铜绿假单胞菌中存在共同和独特的监管途径。选择并进一步测试48个启动子克隆的总共。它们通过至少一种抗生素监管至少两倍。其中,通过测序分析来鉴定由至少四种抗生素驱动的17个启动子和由它们驱动的基因或操纵子。这些基因/操纵子编码潜在的转录调节剂,ABC转运蛋白的组分或未知的蛋白质。这些结果将我们对全球抗生素效果的了解作为基因表达上的信号分子,鉴定的遗传调节网络的潜在组成部分应促进进一步的研究。

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