Suntharalingam Prashanth, Senadheera M D, Mair Richard W, Lévesque Céline M, Cvitkovitch Dennis G
Dental Research Institute, Faculty of Dentistry, University of Toronto, 124 Edward St., Toronto, Ontario M5G1G6, Canada.
J Bacteriol. 2009 May;191(9):2973-84. doi: 10.1128/JB.01563-08. Epub 2009 Feb 27.
Maintaining cell envelope integrity is critical for bacterial survival, including bacteria living in a complex and dynamic environment such as the human oral cavity. Streptococcus mutans, a major etiological agent of dental caries, uses two-component signal transduction systems (TCSTSs) to monitor and respond to various environmental stimuli. Previous studies have shown that the LiaSR TCSTS in S. mutans regulates virulence traits such as acid tolerance and biofilm formation. Although not examined in streptococci, homologs of LiaSR are widely disseminated in Firmicutes and function as part of the cell envelope stress response network. We describe here liaSR and its upstream liaF gene in the cell envelope stress tolerance of S. mutans strain UA159. Transcriptional analysis established liaSR as part of the pentacistronic liaFSR-ppiB-pnpB operon. A survey of cell envelope antimicrobials revealed that mutants deficient in one or all of the liaFSR genes were susceptible to Lipid II cycle interfering antibiotics and to chemicals that perturbed the cell membrane integrity. These compounds induced liaR transcription in a concentration-dependent manner. Notably, under bacitracin stress conditions, the LiaFSR signaling system was shown to induce transcription of several genes involved in membrane protein synthesis, peptidoglycan biosynthesis, envelope chaperone/proteases, and transcriptional regulators. In the absence of an inducer such as bacitracin, LiaF repressed LiaR-regulated expression, whereas supplementing cultures with bacitracin resulted in derepression of liaSR. While LiaF appears to be an integral component of the LiaSR signaling cascade, taken collectively, we report a novel role for LiaFSR in sensing cell envelope stress and preserving envelope integrity in S. mutans.
维持细胞包膜完整性对于细菌的生存至关重要,包括生活在如人类口腔这种复杂且动态环境中的细菌。变形链球菌是龋齿的主要病原体,它利用双组分信号转导系统(TCSTSs)来监测和响应各种环境刺激。先前的研究表明,变形链球菌中的LiaSR双组分信号转导系统调节诸如耐酸性和生物膜形成等毒力特性。尽管在链球菌中未进行研究,但LiaSR的同源物在厚壁菌门中广泛分布,并作为细胞包膜应激反应网络的一部分发挥作用。我们在此描述了变形链球菌UA159菌株中liaSR及其上游的liaF基因在细胞包膜应激耐受性方面的作用。转录分析确定liaSR是五顺反子liaFSR-ppiB-pnpB操纵子的一部分。对细胞包膜抗菌剂的调查显示,liaFSR基因中一个或全部缺失的突变体对干扰脂质II循环的抗生素以及扰乱细胞膜完整性的化学物质敏感。这些化合物以浓度依赖的方式诱导liaR转录。值得注意的是,在杆菌肽应激条件下,LiaFSR信号系统被证明可诱导参与膜蛋白合成、肽聚糖生物合成、包膜伴侣/蛋白酶和转录调节因子的多个基因的转录。在没有杆菌肽等诱导剂的情况下,LiaF抑制LiaR调节的表达,而在培养物中添加杆菌肽则导致liaSR的去抑制。虽然LiaF似乎是LiaSR信号级联的一个组成部分,但总体而言,我们报道了LiaFSR在变形链球菌中感知细胞包膜应激和维持包膜完整性方面的新作用。