INRA, UMR1319 Micalis, Génétique microbienne et Environnement, Guyancourt, France.
PLoS One. 2012;7(12):e51047. doi: 10.1371/journal.pone.0051047. Epub 2012 Dec 11.
We characterized a new quorum-sensing regulator, PlcRa, which is present in various members of the B. cereus group and identified a signaling heptapeptide for PlcRa activity: PapRa(7). We demonstrated that PlcRa is a 3D structural paralog of PlcR using sequence analysis and homology modeling. A comparison of the transcriptomes at the onset of stationary phase of a ΔplcRa mutant and the wild-type B. cereus ATCC 14579 strain showed that 68 genes were upregulated and 49 genes were downregulated in the ΔplcRa mutant strain (>3-fold change). Genes involved in the cysteine metabolism (putative CymR regulon) were downregulated in the ΔplcRa mutant strain. We focused on the gene with the largest difference in expression level between the two conditions, which encoded -AbrB2- a new regulator of the AbrB family. We demonstrated that purified PlcRa bound specifically to the abrB2 promoter in the presence of synthetic PapRa(7), in an electrophoretic mobility shift assay. We further showed that the AbrB2 regulator controlled the expression of the yrrT operon involved in methionine to cysteine conversion. We found that the ΔplcRa mutant strain was more sensitive to hydrogen peroxide- and disulfide-induced stresses than the wild type. When cystine was added to the culture of the ΔplcRa mutant, challenged with hydrogen peroxide, growth inhibition was abolished. In conclusion, we identified a new RNPP transcriptional regulator in B. cereus that activated the oxidative stress response and cysteine metabolism in transition state cells.
我们鉴定了一种新的群体感应调节蛋白 PlcRa,它存在于芽孢杆菌属的不同成员中,并确定了 PlcRa 活性的信号七肽:PapRa(7)。我们通过序列分析和同源建模证明了 PlcRa 是 PlcR 的 3D 结构同源物。在ΔplcRa 突变体和野生型 B. cereus ATCC 14579 菌株进入稳定期时的转录组比较中,我们发现 68 个基因在ΔplcRa 突变体中上调,49 个基因下调(>3 倍变化)。参与半胱氨酸代谢的基因(假定的 CymR 调控子)在ΔplcRa 突变体中下调。我们专注于两个条件下表达水平差异最大的基因,该基因编码 AbrB 家族的新调节因子-AbrB2。我们证明了在存在合成 PapRa(7)的情况下,纯化的 PlcRa 可以特异性结合到 abrB2 启动子上,在电泳迁移率变动分析中。我们进一步表明,AbrB2 调节剂控制涉及蛋氨酸到半胱氨酸转化的 yrrT 操纵子的表达。我们发现,与野生型相比,ΔplcRa 突变体对过氧化氢和二硫键诱导的应激更敏感。当向 ΔplcRa 突变体的培养物中添加胱氨酸并受到过氧化氢的挑战时,生长抑制被消除。总之,我们在芽孢杆菌属中鉴定了一种新的 RNPP 转录调节因子,该因子在过渡态细胞中激活了氧化应激反应和半胱氨酸代谢。