首页> 美国卫生研究院文献>PLoS Clinical Trials >Phenotypic and Genotypic Characterisation of Burkholderia cenocepacia J2315 Mutants Affected in Homoserine Lactone and Diffusible Signal Factor-Based Quorum Sensing Systems Suggests Interplay between Both Types of Systems
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Phenotypic and Genotypic Characterisation of Burkholderia cenocepacia J2315 Mutants Affected in Homoserine Lactone and Diffusible Signal Factor-Based Quorum Sensing Systems Suggests Interplay between Both Types of Systems

机译:受同型内酯和基于弥散信号因子的群体感应系统影响的伯克霍尔德菌新菌J2315突变体的表型和基因型特征表明这两种类型系统之间的相互作用

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摘要

Many putative virulence factors of Burkholderia cenocepacia are controlled by various quorum sensing (QS) circuits. These QS systems either use N-acyl homoserine lactones (AHL) or cis-2-dodecenoic acid (“Burkholderia diffusible signal factor”, BDSF) as signalling molecules. Previous work suggested that there is little cross-talk between both types of systems. We constructed mutants in B. cenocepacia strain J2315, in which genes encoding CepI (BCAM1870), CciI (BCAM0239a) and the BDSF synthase (BCAM0581) were inactivated, and also constructed double (ΔcepIΔBCAM0581, ΔcciIΔBCAM0581 and ΔcepIΔcciI) mutants and a triple (ΔcepIΔcciIΔBCAM0581) mutant. Subsequently we investigated phenotypic properties (antibiotic susceptibility, biofilm formation, production of AHL and BDSF, protease activity and virulence in Caenorhabditis elegans) and measured gene expression in these mutants, and this in the presence and absence of added BDSF, AHL or both. The triple mutant was significantly more affected in biofilm formation, antimicrobial susceptibility, virulence in C. elegans, and protease production than either the single or double mutants. The ΔBCAM0581 mutant and the ΔcepIΔBCAM0581 and ΔcciIΔBCAM0581 double mutants produced significantly less AHL compared to the WT strain and the ΔcepI and ΔcciI single mutant, respectively. The expression of cepI and cciI in ΔBCAM0581, was approximately 3-fold and 7-fold (p<0.05) lower than in the WT, respectively. The observed differences in AHL production, expression of cepI and cciI and QS-controlled phenotypes in the ΔBCAM0581 mutant could (at least partially) be restored by addition of BDSF. Our data suggest that, in B. cenocepacia J2315, AHL and BDSF-based QS systems co-regulate the same set of genes, regulate different sets of genes that are involved in the same phenotypes and/or that the BDSF system controls the AHL-based QS system. As the expression of the gene encoding the C6-HSL synthase CciI (and to a lesser extent the C8-HSL synthase CepI) is partially controlled by BDSF, it seems likely that the BDSF QS systems controls AHL production through this system.
机译:Burkholderia cenocepacia的许多推定毒力因子受各种群体感应(QS)电路控制。这些QS系统使用N-酰基高丝氨酸内酯(AHL)或顺式-2-十二碳烯酸(“伯克霍尔德菌扩散信号因子”,BDSF)作为信号分子。先前的工作表明,两种类型的系统之间几乎没有串扰。我们构建了新洋葱伯克霍尔德菌菌株J2315的突变体,其中编码CepI(BCAM1870),CciI(BCAM0239a)和BDSF合酶(BCAM0581)的基因被失活,还构建了双重突变(ΔcepIΔBCAM0581,ΔcciIΔBCAM0581和ΔcepIΔcciI1cciI(ΔcepIΔcciI1cciI) )的突变体。随后,我们调查了表型特性(抗生素敏感性,生物膜形成,AHL和BDSF的产生,线虫秀丽隐杆线虫中的蛋白酶活性和毒力),并测量了这些突变体中的基因表达,以及是否存在添加的BDSF,AHL或两者皆有的情况。与单突变体或双突变体相比,三突变体在生物膜形成,抗菌药敏感性,秀丽隐杆线虫的毒力和蛋白酶生产中受到的影响更大。与WT菌株和Δc epI 和Δc ciI 单突变体相比,ΔBCAM0581突变体和ΔcepIΔBCAM0581和ΔcciIΔBCAM0581双突变体产生的AHL明显减少。 cepI cciI 在ΔBCAM0581中的表达分别比WT低3倍和7倍(p <0.05)。通过添加BDSF可以(至少部分)恢复观察到的AHL产生, cepI cciI 的表达以及QS控制的表型之间的差异。我们的数据表明,在 B中。 J2315,基于AHL和BDSF的QS系统共同调节同一组基因,调节涉及同一表型和/或BDSF系统控制基于AHL的QS系统的不同基因集。由于编码C6-HSL合酶CciI(以及程度较小的C8-HSL合酶CepI)的基因的表达受BDSF部分控制,因此BDSF QS系统似乎可以通过该系统控制AHL的产生。

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