Castanié-Cornet Marie-Pierre, Treffandier Hélène, Francez-Charlot Anne, Gutierrez Claude, Cam Kaymeuang
Laboratoire de Microbiologie et de Génétique Moléculaire, Centre National de la Recherche Scientifique, Université Paul Sabatier, 118 Route de Narbonne, 31062 Toulouse, France.
Microbiology (Reading). 2007 Jan;153(Pt 1):238-46. doi: 10.1099/mic.0.29278-0.
The RcsCDB signal transduction system is an atypical His-Asp phosphorelay. Notably, the response regulator RcsB can be activated either by phosphorylation through the RcsCD pathway or by an accessory cofactor RcsA. Although conserved in Enterobacteriaceae, the role of this system in adaptation to environmental stress conditions is largely unknown. This study reveals that the response regulator RcsB is essential to glutamate-dependent acid resistance, a condition pertinent to the lifestyle of Escherichia coli. The requirement for RcsB is independent of its activation by either the RcsCD or the RcsA pathway. The basal activity of RcsB appears to be necessary and sufficient for acid resistance. The sensitivity of the rcsB strain to low pH is correlated to a strong reduction of the expression of the glutamate decarboxylase genes, gadA and gadB, during the stationary phase of growth. This effect on gadA/B expression is not mediated by the general stress sigma factor RpoS, but does require a functional gadE allele and the previously identified GadE box. Therefore activation of gadAB expression and acid resistance absolutely requires both GadE and RcsB. In contrast, an increase in RcsB activity through the activation of the RcsCD phosphorelay or the RcsA pathway or through overproduction of the protein leads to general repression of the expression of the gad genes and a corresponding reduction in acid resistance.
RcsCDB信号转导系统是一种非典型的组氨酸-天冬氨酸磷酸中继系统。值得注意的是,反应调节因子RcsB既可以通过RcsCD途径磷酸化激活,也可以通过辅助因子RcsA激活。尽管该系统在肠杆菌科中保守,但它在适应环境应激条件中的作用在很大程度上尚不清楚。本研究表明,反应调节因子RcsB对于谷氨酸依赖性酸抗性至关重要,这一条件与大肠杆菌的生活方式相关。对RcsB的需求与其通过RcsCD或RcsA途径的激活无关。RcsB的基础活性似乎对于酸抗性是必要且充分的。rcsB菌株对低pH的敏感性与生长稳定期谷氨酸脱羧酶基因gadA和gadB表达的强烈降低相关。对gadA/B表达的这种影响不是由一般应激σ因子RpoS介导的,但确实需要功能性的gadE等位基因和先前鉴定的GadE框。因此,gadAB表达的激活和酸抗性绝对需要GadE和RcsB。相反,通过激活RcsCD磷酸中继或RcsA途径或通过蛋白质的过量产生来增加RcsB活性会导致gad基因表达的普遍抑制和相应的酸抗性降低。