Liu Yaling, Burne Robert A
Department of Oral Biology, University of Florida, Gainesville, FL 32610, USA.
J Bacteriol. 2009 Dec;191(23):7353-62. doi: 10.1128/JB.01053-09. Epub 2009 Sep 25.
The oral commensal Streptococcus gordonii must adapt to constantly fluctuating and often hostile environmental conditions to persist in the oral cavity. The arginine deiminase system (ADS) of S. gordonii enables cells to produce, ornithine, ammonia, CO(2), and ATP from arginine hydrolysis, augmenting the acid tolerance of the organism. The ADS genes are substrate inducible and sensitive to catabolite repression, mediated through ArcR and CcpA, respectively, but the system also requires low pH and anaerobic conditions for optimal activation. Here, we demonstrate that the CiaRH and ComDE two-component systems (TCS) are required for low-pH-dependent expression of ADS genes in S. gordonii. Further, the VicRK TCS is required for optimal ADS gene expression under anaerobic conditions and enhances the sensitivity of the operon to repression by oxygen. The known anaerobic activator of the ADS, Fnr-like protein (Flp), appeared to act independently of the Vic TCS. Mutants of S. gordonii lacking components of the CiaRH, ComDE, or VicRK grew more slowly in acidified media and were more sensitive to killing at lethal pH values and to agents that induce oxidative stress. This study provides the first evidence that TCS can regulate the ADS of bacteria in response to specific environmental signals and reveals some notable differences in the contribution of CiaRH, ComDE, and VicRK to viability and stress tolerance between the oral commensal S. gordonii and the oral pathogen Streptococcus mutans.
口腔共生菌戈登氏链球菌必须适应不断变化且通常具有挑战性的环境条件,才能在口腔中生存。戈登氏链球菌的精氨酸脱亚氨酶系统(ADS)可使细胞通过精氨酸水解产生鸟氨酸、氨、二氧化碳和三磷酸腺苷(ATP),从而增强该生物体的耐酸性。ADS基因是底物诱导型的,分别通过ArcR和CcpA介导对分解代谢物阻遏敏感,但该系统还需要低pH值和厌氧条件才能实现最佳激活。在此,我们证明了CiaRH和ComDE双组分系统(TCS)是戈登氏链球菌中ADS基因低pH依赖性表达所必需的。此外,VicRK TCS是厌氧条件下ADS基因最佳表达所必需的,并增强了该操纵子对氧气阻遏的敏感性。已知的ADS厌氧激活剂,类Fnr蛋白(Flp),似乎独立于Vic TCS发挥作用。缺乏CiaRH、ComDE或VicRK组分的戈登氏链球菌突变体在酸化培养基中生长较慢,并且在致死pH值下对杀伤以及对诱导氧化应激的试剂更敏感。这项研究提供了首个证据,表明双组分系统可响应特定环境信号调节细菌的ADS,并揭示了CiaRH、ComDE和VicRK在口腔共生菌戈登氏链球菌和口腔病原体变形链球菌的生存能力和应激耐受性方面的贡献存在一些显著差异。