Tseng Ching Wen, Zhang Shuping, Stewart George C
Department of Diagnostic Medicine/Pathobiology, College of Veterinary Medicine, Kansas State University, Manhattan, Kansas 66506, USA.
J Bacteriol. 2004 Mar;186(6):1793-801. doi: 10.1128/JB.186.6.1793-1801.2004.
The quorum-sensing system of Staphylococcus aureus, the accessory gene regulator (Agr) system, is responsible for increased transcription of certain exoprotein genes and decreased transcription of certain cell wall-associated proteins during the postexponential phase of growth. This regulation is important for virulence, as evidenced by a reduction in virulence associated with a loss of the Agr system. The enterotoxin D (sed) determinant is upregulated by the Agr system. To define the Agr-regulated cis element(s) within the sed promoter region, we utilized promoters not regulated by Agr to create hybrid promoters. Hybrid promoters were created by using sed sequences combined with the enterotoxin A (sea) promoter or the S. aureus lac operon promoter sequences. The results obtained indicated that the Agr control element of the sed promoter resides within the -35 promoter element and at the Pribnow box to the +1 site of the promoter. At these positions of the sed promoter, a directly repeated 6-bp sequence was found. This repeat is important for overall promoter activity, and maximal regulation of the promoter activity requires both repeat elements. Furthermore, Agr control of sed promoter activity was found to be dependent upon the presence of a functional Rot protein. Therefore, the postexponential increase in sed transcription results from the Agr-mediated reduction in Rot activity rather than as a direct effect of the Agr system.
金黄色葡萄球菌的群体感应系统,即辅助基因调节子(Agr)系统,负责在生长指数后期增加某些外蛋白基因的转录,并减少某些细胞壁相关蛋白的转录。这种调节对毒力很重要,与Agr系统缺失相关的毒力降低就证明了这一点。肠毒素D(sed)决定簇受Agr系统上调。为了确定sed启动子区域内受Agr调节的顺式元件,我们利用不受Agr调节的启动子来创建杂交启动子。杂交启动子是通过将sed序列与肠毒素A(sea)启动子或金黄色葡萄球菌乳糖操纵子启动子序列结合而创建的。获得的结果表明,sed启动子的Agr控制元件位于启动子的 -35 元件内以及从Pribnow盒到启动子的 +1 位点处。在sed启动子的这些位置,发现了一个直接重复的6碱基序列。这个重复序列对整体启动子活性很重要,启动子活性的最大调节需要两个重复元件。此外,发现sed启动子活性的Agr控制依赖于功能性Rot蛋白的存在。因此,sed转录在指数后期的增加是由于Agr介导的Rot活性降低,而不是Agr系统的直接作用。