Department of Microbiology and Immunology, Box 672, University of Rochester School of Medicine and Dentistry, Rochester, 601 Elmwood Avenue, NY 14642, USA.
Center for Oral Biology, Box 611, University of Rochester School of Medicine and Dentistry, Rochester, 601 Elmwood Avenue, NY 14642, USA.
FEMS Microbiol Lett. 2021 Feb 12;368(3). doi: 10.1093/femsle/fnab004.
Streptococcus mutans, the etiologic agent of dental caries in humans, is considered a dominating force in the oral microbiome due to its highly-evolved propensity for survival. The oral pathogen encodes an elaborate array of regulatory elements, including the carbon catabolite-responsive regulator, CcpA, a global regulator key in the control of sugar metabolism and in stress tolerance response mechanisms. The recently characterized trehalose utilization operon, integral for the catabolism of the disaccharide trehalose, is controlled by a local regulator, TreR, which has been implicated in a number of cellular functions outside of trehalose catabolism. Electrophoretic mobility shift assays demonstrated that CcpA bound a putative cre site in the treR promoter. Loss of ccpA resulted in elevated expression of treR in cultures of the organism grown in glucose or trehalose, indicating that CcpA not only acts as a repressor of trehalose catabolism genes, but also the local regulator. The loss of both CcpA and TreR in S. mutans resulted in an impaired growth rate and fitness response, supporting the hypothesis that these regulators are involved in carbon catabolism control and in induction of components of the organism's stress response.
变异链球菌是人类龋齿的病原体,由于其高度进化的生存能力,被认为是口腔微生物组中的主导力量。口腔病原体编码了一系列精细的调节元件,包括碳分解代谢物响应调节剂 CcpA,它是控制糖代谢和应激耐受反应机制的关键全局调节剂。最近表征的海藻糖利用操纵子对于二糖海藻糖的分解代谢至关重要,由局部调节剂 TreR 控制,TreR 已被牵连到许多除海藻糖分解代谢之外的细胞功能中。电泳迁移率变动分析表明,CcpA 结合了 treR 启动子中一个假定的 cre 位点。在葡萄糖或海藻糖中生长的生物体的培养物中,ccpA 的缺失导致 treR 的表达升高,表明 CcpA 不仅作为海藻糖分解代谢基因的抑制剂,而且作为局部调节剂。在 S. mutans 中同时缺失 CcpA 和 TreR 导致生长速率和适应性反应受损,支持了这些调节剂参与碳分解代谢控制和诱导生物体应激反应成分的假设。