Kropac Alexandra C, Eshwar Athmanya K, Stephan Roger, Tasara Taurai
Institute for Food Safety and Hygiene, Vetsuisse Faculty, University of Zurich, Zurich, Switzerland.
Front Microbiol. 2019 Jul 9;10:1538. doi: 10.3389/fmicb.2019.01538. eCollection 2019.
the causative agent of listeriosis is an important public health concern and food safety challenge. Increased tolerance of this bacterium to benzalkonium chloride (BC), an antibacterial agent widely used in industrial settings, is a growing issue. Plasmid pLMST6 harboring the gene of the multidrug efflux pump protein EmrC has been recently linked to enhanced BC tolerance and meningitis due to ST6 strains. In this study, occurrence and contribution of this plasmid to BC tolerance was examined using PCR, plasmid curing and transformation, RT-qPCR and proteome analysis, respectively. Furthermore, the substrate specificity of the pLMST6 associated EmrC efflux pump and the impact of the plasmid on virulence were investigated. pLMST6 was detected in 7 (1.6%) of 439 strains isolated from different sources. A phenotypic role of this plasmid in conferring increased BC tolerance was confirmed by showing that plasmid cure increases BC susceptibility whereas plasmid complementation and transformation increased BC tolerance in different genetic backgrounds and . RT-qPCR showed that BC stress exposure strongly induces the expression of mRNAs associated with pLMST6 genes for EmrC and a TetR transcription regulator. A full proteome analysis in a plasmid harboring strain revealed that the pLMST6 encoded putative TetR family transcription regulator protein is the most upregulated protein in response to BC stress exposure. An investigation into the EmrC efflux pump's substrate spectrum showed that while pLMST6 confers increased tolerance to other quaternary ammonium compounds (QACs) based disinfectants it has no impact on the sensitivity of to non-QAC disinfectants as well as on antibiotics such as ampicillin, tetracycline and gentamicin. A reduction in the survival of zebrafish embryos infected with pLMST6 plasmid harboring strains was observed when compared with plasmid cured variants of the same strains suggesting that some pLMST6 harbored genes might contribute to increased virulence capacity. Overall these results confirm the phenotypic contribution of pLMST6 plasmid in promoting and dissemination of BC tolerance in as well as provide new insights on different molecular levels of pLMST6 associated genes in response to BC stress.
李斯特菌病的病原体是一个重要的公共卫生问题和食品安全挑战。这种细菌对苯扎氯铵(BC)(一种在工业环境中广泛使用的抗菌剂)的耐受性增强,是一个日益严重的问题。携带多药外排泵蛋白EmrC基因的质粒pLMST6最近被认为与ST6菌株对BC耐受性增强及脑膜炎有关。在本研究中,分别使用PCR、质粒消除和转化、RT-qPCR以及蛋白质组分析,检测了该质粒的存在情况及其对BC耐受性的影响。此外,还研究了与pLMST6相关的EmrC外排泵的底物特异性以及该质粒对毒力的影响。在从不同来源分离的439株菌株中,有7株(1.6%)检测到了pLMST6。通过证明质粒消除会增加对BC的敏感性,而质粒互补和转化在不同遗传背景下会增加对BC的耐受性,证实了该质粒在赋予BC耐受性增强方面的表型作用。RT-qPCR表明,BC应激暴露强烈诱导与EmrC和TetR转录调节因子的pLMST6基因相关的mRNA表达。对携带质粒的菌株进行的全蛋白质组分析表明,pLMST6编码的假定TetR家族转录调节蛋白是响应BC应激暴露上调最明显的蛋白。对EmrC外排泵底物谱的研究表明,虽然pLMST6赋予对其他基于季铵化合物(QACs)的消毒剂的耐受性增强,但它对非QAC消毒剂的敏感性以及对氨苄青霉素、四环素和庆大霉素等抗生素的敏感性没有影响。与相同菌株的质粒消除变体相比,观察到感染携带pLMST6质粒菌株的斑马鱼胚胎存活率降低,这表明一些携带pLMST6的基因可能有助于增加毒力。总体而言,这些结果证实了pLMST6质粒在促进和传播对BC的耐受性方面的表型作用,并为pLMST6相关基因在响应BC应激时的不同分子水平提供了新的见解。