Morehouse School of Medicine, SW Atlanta, GA, USA.
FEMS Microbiol Lett. 2010 Jan;302(1):22-31. doi: 10.1111/j.1574-6968.2009.01837.x. Epub 2009 Oct 28.
The PhoBR regulatory system is required for the induction of multiple genes under conditions of phosphate limitation. Here, we examine the role of PhoB in biofilm formation and environmental stress response in Vibrio cholerae of the El Tor biotype. Deletion of phoB or hapR enhanced biofilm formation in a phosphate-limited medium. Planktonic and redispersed biofilm cells of the DeltaphoB mutant did not differ from wild type for the expression of HapR, suggesting that PhoB negatively affects biofilm formation through an HapR-independent pathway. The DeltaphoB mutant exhibited elevated expression of exopolysaccharide genes vpsA and vpsL compared with the wild type. Deletion of hapR enhanced the expression of the positive regulator vpsT, but had no effect on the expression of vpsR. In contrast, deletion of phoB enhanced the expression of the positive regulator vpsR, but had no effect on the expression of hapR and vpsT. The DeltaphoB mutant was more sensitive to hydrogen peroxide compared with the wild type and with an isogenic DeltarpoS mutant. Conversely, the DeltaphoB mutant was more resistant to acidic conditions and high osmolarity compared with the wild type and with an isogenic DeltarpoS mutant. Taken together, our data suggest that phosphate limitation induces V. cholerae to adopt a free-swimming life style in which PhoB modulates environmental stress response in a manner that differs from the general stress response regulator RpoS.
PhoBR 调控系统在磷饥饿条件下诱导多种基因的表达是必需的。在这里,我们研究了 El Tor 生物型霍乱弧菌中 PhoB 在生物膜形成和环境应激反应中的作用。PhoB 或 hapR 的缺失增强了在磷限制培养基中的生物膜形成。浮游和再分散的 DeltaphoB 突变体生物膜细胞在 HapR 的表达上与野生型没有差异,表明 PhoB 通过一种不依赖于 HapR 的途径负调控生物膜形成。DeltaphoB 突变体与野生型相比,表达了更高水平的 exopolysaccharide 基因 vpsA 和 vpsL。hapR 的缺失增强了正调控因子 vpsT 的表达,但对 vpsR 的表达没有影响。相比之下,PhoB 的缺失增强了正调控因子 vpsR 的表达,但对 hapR 和 vpsT 的表达没有影响。与野生型和同基因 DeltarpoS 突变体相比,DeltaphoB 突变体对过氧化氢更敏感。相反,与野生型和同基因 DeltarpoS 突变体相比,DeltaphoB 突变体对酸性条件和高渗透压更具抗性。总之,我们的数据表明,磷饥饿诱导霍乱弧菌采用自由游动的生活方式,其中 PhoB 以不同于一般应激反应调节剂 RpoS 的方式调节环境应激反应。