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A Burkholderia cenocepacia Orphan LuxR Homolog Is Involved in Quorum-Sensing Regulation▿ †

机译:Burkholderia cenocepacia孤儿LuxR同系物参与群体感应调控▿†

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摘要

Burkholderia cenocepacia utilizes quorum sensing to control gene expression, including the expression of genes involved in virulence. In addition to CepR and CciR, a third LuxR homolog, CepR2, was found to regulate gene expression and virulence factor production. All B. cenocepacia strains examined contained this orphan LuxR homolog, which was not associated with an adjacent N-acyl-homoserine lactone synthase gene. Expression of cepR2 was negatively autoregulated and was negatively regulated by CciR in strain K56-2. Microarray analysis and quantitative reverse transcription-PCR determined that CepR2 did not influence expression of cepIR or cciIR. However, in strain K56-2, CepR2 negatively regulated expression of several known quorum-sensing-controlled genes, including genes encoding zinc metalloproteases. CepR2 exerted positive and negative regulation on genes on three chromosomes, including strong negative regulation of a gene cluster located adjacent to cepR2. In strain H111, which lacks the CciIR quorum-sensing system, CepR2 positively regulated pyochelin production by controlling transcription of one of the operons required for the biosynthesis of the siderophore in an N-acyl-homoserine lactone-independent manner. CepR2 activation of a luxI promoter was demonstrated in a heterologous Escherichia coli host, providing further evidence that CepR2 can function in the absence of signaling molecules. This study demonstrates that the orphan LuxR homolog CepR2 contributes to the quorum-sensing regulatory network in two distinct strains of B. cenocepacia.
机译:伯克霍尔德菌(Burkholderia cenocepacia)利用群体感应来控制基因表达,包括与毒力有关的基因的表达。除了CepR和CciR,还发现了第三个LuxR同源物CepR2可以调节基因表达和毒力因子的产生。所有受检的新芽孢杆菌菌株均含有该孤儿LuxR同源物,该同源物与相邻的N-酰基-高丝氨酸内酯合酶基因无关。在菌株K56-2中,cepR2的表达被负向自动调节,并且被CciR负向调节。微阵列分析和定量逆转录-PCR确定CepR2不影响cepIR或cciIR的表达。但是,在菌株K56-2中,CepR2负调控了一些已知的群体感应控制基因的表达,包括编码锌金属蛋白酶的基因。 CepR2对三个染色体上的基因施加正调控和负调控,包括对与cepR2相邻的基因簇的强负调控。在缺乏CciIR群体感应系统的H111菌株中,CepR2通过以N-酰基-高丝氨酸内酯非依赖性方式控制铁载体生物合成所需的操纵子之一的转录,从而积极地调节了Pyochelin的产生。在异源大肠杆菌宿主中证明了luxI启动子的CepR2激活,提供了进一步的证据,证明CepR2可以在不存在信号分子的情况下发挥功能。这项研究表明孤儿LuxR同源CepR2有助于cenocepacia的两个不同菌株中的群体感应调控网络。

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