1Department of Oral Biology, College of Dentistry, University of Florida, Gainesville, FL 32610, USA.
2Department of Microbiology and Cell Science, Institute of Food and Agricultural Sciences, University of Florida, Gainesville, FL 32611, USA.
Microbiology (Reading). 2019 Jan;165(1):113-123. doi: 10.1099/mic.0.000744. Epub 2018 Nov 26.
The Streptococcus mutans Cid/Lrg system represents an ideal model for studying this organism's ability to withstand various stressors encountered in the oral cavity. The lrg and cid operons display distinct and opposite patterns of expression in response to growth phase and glucose levels, suggesting that the activity and regulation of these proteins must be tightly coordinated in the cell and closely associated with metabolic pathways of the organism. Here, we demonstrate that expression of the cid and lrg operons is directly mediated by a global transcriptional regulator CcpA in response to glucose levels. Comparison of the cid and lrg promoter regions with the conserved CcpA binding motif revealed the presence of two potential cre sites (for CcpA binding) in the cid promoter (designated cid-cre1 and cid-cre2), which were arranged in a similar manner to those previously identified in the lrg promoter region (designated lrg-cre1 and lrg-cre2). We demonstrated that CcpA binds to both the cid and lrg promoters with a high affinity, but has an opposing glucose-dependent effect on the regulation of cid (positive) and lrg (negative) expression. DNase I footprinting analyses revealed potential binding sequences for CcpA in both cid and lrg promoter regions. Collectively, these data suggest that CcpA is a direct regulator of cid and lrg expression, and are suggestive of a potential mechanism by which Cid/Lrg-mediated virulence and cellular homeostasis is integrated with signals associated with both the environment and cellular metabolic status.
变异链球菌 Cid/Lrg 系统是研究该菌在口腔中耐受各种应激因子的理想模型。 lrg 和 cid 操纵子在生长阶段和葡萄糖水平的响应中表现出明显相反的表达模式,这表明这些蛋白质的活性和调节必须在细胞中紧密协调,并与生物体的代谢途径密切相关。在这里,我们证明 cid 和 lrg 操纵子的表达是由全局转录调节因子 CcpA 直接介导的,以响应葡萄糖水平。cid 和 lrg 启动子区域与保守的 CcpA 结合基序的比较揭示了 cid 启动子(命名为 cid-cre1 和 cid-cre2)中存在两个潜在的 cre 位点(用于 CcpA 结合),其排列方式与先前在 lrg 启动子区域中鉴定的方式相似(命名为 lrg-cre1 和 lrg-cre2)。我们证明 CcpA 与 cid 和 lrg 启动子具有高亲和力结合,但对 cid(正)和 lrg(负)表达的调节具有相反的葡萄糖依赖性影响。DNase I 足迹分析揭示了 CcpA 在 cid 和 lrg 启动子区域中的潜在结合序列。总之,这些数据表明 CcpA 是 cid 和 lrg 表达的直接调节因子,并暗示了 Cid/Lrg 介导的毒力和细胞内稳态与环境和细胞代谢状态相关信号的整合的潜在机制。