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首页> 外文期刊>Cell biochemistry and biophysics >The Role of the QseC Quorum-Sensing Sensor Kinase in Epinephrine-Enhanced Motility and Biofilm Formation by Escherichia coli
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The Role of the QseC Quorum-Sensing Sensor Kinase in Epinephrine-Enhanced Motility and Biofilm Formation by Escherichia coli

机译:QseC群体感应传感器激酶在肾上腺素增强的运动和生物膜形成中的作用。

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Biofilms play a pivotal role in infections related to devices. Biofilm formation in Escherichia coli is mediated by the quorum-sensing E. coli regulator C (QseC), the histidine sensor kinase that can sense epinephrine (EPI)orepinephrine (NE). In this study, we evaluate the role of the QseC quorum-sensing sensor kinase in epinephrine-enhanced motility and biofilm formation by E. coli. An E. coli MC1000 qseC mutant was constructed. We investigated the role of the QseC in the formation of biofilms on the surface of medical-grade polyvinyl chloride using the E. coli K-12 MC1000 strain as well as a corresponding qseC mutant. Addition of EPI/NE increased biofilm formation by wild-type K-12 MC1000 but not by the isogenic qseC mutant. Scanning confocal laser microscopy corroborated these results by showing that EPI/NE addition significantly increased biofilm's thickness. As expected, the addition of EPI/NE to the qseC mutant, which lacks the ability to sense the hormones, failed to stimulate biofilm formation. Since EPI/NE addition increased bacterial motility, we proposed that their stimulatory effects on biofilm formation occur by enhancing bacterial motility and altering biofilm architecture. We also found that EPI/NE regulate motility and the biofilm phenotype via QseC, as motility was diminished and biofilm formation was significantly decreased in a qseC deletion mutant. These results indicate that EPI/NE induce E. coli biofilm formation on the surface of polyvinyl chloride through QseC. Cross-talk between E. coli (quorum sensing) and host hormones may explain the pathogen-caused opportunistic infections that occur in patients with prosthetic devices used during hormone level fluctuations in the host.
机译:生物膜在与设备有关的感染中起关键作用。大肠杆菌中的生物膜形成是由群体感应大肠杆菌调节剂C(QseC)介导的,该调节剂可以感应肾上腺素(EPI)/去甲肾上腺素(NE)的组氨酸传感器激酶。在这项研究中,我们评估QseC群体感应传感器激酶在肾上腺素增强的运动和生物膜形成中的作用。构建了大肠杆菌MC1000 qseC突变体。我们使用大肠杆菌K-12 MC1000菌株以及相应的qseC突变体,研究了QseC在医用级聚氯乙烯表面生物膜形成中的作用。 EPI / NE的添加增加了野生型K-12 MC1000的生物膜形成,但同基因的qseC突变体却没有。扫描共聚焦激光显微镜证实了这些结果,表明加入EPI / NE会显着增加生物膜的厚度。不出所料,缺乏感知激素能力的qseC突变体中添加了EPI / NE未能刺激生物膜的形成。由于EPI / NE的添加增加了细菌的运动能力,我们提出它们对生物膜形成的刺激作用是通过增强细菌的运动能力和改变生物膜的结构而发生的。我们还发现,EPI / NE通过QseC调节运动性和生物膜表型,因为在qseC缺失突变体中运动性降低且生物膜形成显着减少。这些结果表明,EPI / NE通过QseC诱导聚氯乙烯表面上的大肠杆菌生物膜形成。大肠杆菌(群体感应)与宿主激素之间的串扰可能解释了在宿主体内激素水平波动期间使用假体装置的患者中,病原体引起的机会性感染。

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