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Identification and characterization of naturally occurring DSF-family quorum sensing signal turnover system in the phytopathogen Xanthomonas

机译:植物病原体黄单胞菌中自然存在的DSF-家庭群体感应信号转换系统的鉴定和表征

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Molecules of the diffusible signal factor (DSF)-family are a class of quorum sensing (QS) signals used by the phytopathogens Xanthomonas. Studies during the last decade have outlined how Xanthomonas cells enter the QS phase. However, information on the mechanism underlying its exit from the QS phase is limited. RpfB has recently been reported as a fatty acyl-CoA ligase (FCL) that activates a wide range of fatty acids to their CoA esters in vitro. Here, we establish an improved quantification assay for DSF-family signals using liquid chromatography-mass spectrometry in X.campestris pv. campestris (Xcc). We first demonstrated that RpfB represents a naturally occurring DSF-family signal turnover system.RpfB effectively turns over DSF-family signals DSF and BDSFin vivo. RpfB FCL enzymatic activity is required for DSF and BDSF turnover. Deletion of rpfB slightly increased Xcc virulence in the Chinese radish and overexpression of rpfB significantly decreased virulence. We further showed that the expression of rpfB is growth phase-dependent, and its expression is significantly enhanced when Xcc cells enter the stationary phase. DSF regulates rpfB expression in a concentration-dependent manner. rpfB expression is also negatively regulated by the DSF signalling components RpfC, RpfG and Clp. The global transcription factor Clp directly binds to the AATGC-tgctgc-GCATC motif in the promoter region of rpfB to repress its expression. Finally, RpfB-dependent signal turnover system was detected in a wide range of bacterial species, suggesting that it is a conserved mechanism.
机译:扩散信号因子(DSF)家族的分子是植物病原体Xanthomonas使用的一类群体感应(QS)信号。最近十年的研究概述了黄单胞菌细胞如何进入QS阶段。但是,有关退出QS阶段的机制的信息有限。 RpfB最近被报道为一种脂肪酰基辅酶A连接酶(FCL),可在体外将多种脂肪酸活化为其CoA酯。在这里,我们建立了一种改进的定量分析方法,用于在X.campestris pv中使用液相色谱-质谱联用技术对DSF系列信号进行定量分析。 campestris(Xcc)。我们首先证明RpfB代表自然发生的DSF家族信号转换系统.RpfB在体内有效地转换DSF家族信号DSF和BDSF。 DSF和BDSF转换需要RpfB FCL酶促活性。删除rpfB会稍微增加中国萝卜的Xcc毒力,而rpfB的过表达会显着降低毒力。我们进一步表明rpfB的表达是生长阶段依赖性的,当Xcc细胞进入静止期时,其表达显着增强。 DSF以浓度依赖性方式调节rpfB表达。 rpfB表达也受到DSF信号成分RpfC,RpfG和Clp的负调控。全局转录因子Clp直接与rpfB启动子区域中的AATGC-tgctgc-GCATC基序结合以抑制其表达。最后,在多种细菌中检测到了依赖RpfB的信号转换系统,表明这是一个保守的机制。

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