Gélis-Jeanvoine Sébastien, Canette Alexis, Gohar Michel, Caradec Thibault, Lemy Christelle, Gominet Myriam, Jacques Philippe, Lereclus Didier, Slamti Leyla
Micalis Institute, INRA, AgroParisTech, Université Paris-Saclay, 78350 Jouy-en-Josas, France.
University of Lille, EA 7394, ICV-Institut Charles Viollette, ProBioGEM Team, Polytech'Lille, Avenue Langevin, 59655 Villeneuve d'Ascq, France.
Res Microbiol. 2017 May;168(4):356-368. doi: 10.1016/j.resmic.2016.06.002. Epub 2016 Jun 25.
Bacteria of the Bacillus genus are able to synthesize several families of lipopeptides. These small molecules are the product of non-ribosomal peptide synthetases. In 2000, it was found that Bacillus thuringiensis, an entomopathogenic bacterium of the Bacillus cereus group, produced a previously unknown lipopeptide: kurstakin. Genomic analyses reveal that the krs locus, encoding the kurstakin synthetases, is specific to the B. cereus group, but is unevenly distributed within this group. Previous work showed that krs transcription requires the necrotrophism quorum-sensor NprR. Here, we demonstrated that the genes of the krs locus form an operon and we defined its transcription start site. Following krs transcription at the population and single-cell levels in multiple culture conditions, we depicted a condition-dependent transcription pattern, indicating that production of kurstakin is subject to environmental regulation. Consistent with this idea, we found krs transcription to be regulated by another master regulator, Spo0A, suggesting that krs expression is fine-tuned by integrating multiple signals. We also reported an unknown DNA palindrome in the krs promoter region that modulates krs expression. Due to their surfactant properties, lipopeptides could play several physiological roles. We showed that the krs locus was required for proper biofilm structuration.
芽孢杆菌属的细菌能够合成几个脂肽家族。这些小分子是非核糖体肽合成酶的产物。2000年,人们发现苏云金芽孢杆菌,一种蜡样芽孢杆菌群的昆虫病原细菌,产生了一种以前未知的脂肽:库尔斯塔金。基因组分析表明,编码库尔斯塔金合成酶的krs基因座是蜡样芽孢杆菌群特有的,但在该菌群内分布不均。先前的研究表明,krs转录需要坏死营养群体感应因子NprR。在这里,我们证明了krs基因座的基因形成一个操纵子,并确定了其转录起始位点。在多种培养条件下,对群体和单细胞水平的krs转录进行研究后,我们描绘了一种依赖条件的转录模式,表明库尔斯塔金的产生受环境调控。与此观点一致,我们发现krs转录受另一个主调节因子Spo0A调控,这表明krs表达通过整合多种信号进行微调。我们还报道了krs启动子区域中一个未知的DNA回文结构,它调节krs表达。由于其表面活性剂特性,脂肽可能发挥多种生理作用。我们表明,krs基因座是生物膜正常结构形成所必需的。