Li Luen-Luen, Malone Jane E, Iglewski Barbara H
Department of Microbiology and Immunology, Box 672, University of Rochester School of Medicine and Dentistry, Rochester, NY 14642, USA.
J Bacteriol. 2007 Jun;189(12):4367-74. doi: 10.1128/JB.00007-07. Epub 2007 Apr 20.
Bacteria communicate with each other to regulate cell density-dependent gene expression via a quorum-sensing (QS) cascade. In Pseudomonas aeruginosa, two known QS systems, las and rhl, control the expression of many factors that relate to virulence, pathogenicity, and biofilm development. Microarray studies of the las and rhl regulons led to our hypothesis that a complicated hierarchy in the QS regulon is composed of multiple transcriptional regulators. Here, we examined a QS-regulated gene, vqsR, which encodes a probable transcriptional regulator with a putative 20-bp operator sequence (las box) upstream. The transcriptional start site for vqsR was determined. The vqsR promoter was identified by examining a series of vqsR promoter-lacZ fusions. In addition, an Escherichia coli system where either LasR or RhlR protein was expressed from a plasmid indicated that the las system was the dominant regulator for vqsR. Electrophoretic mobility shift assays (EMSA) demonstrate that purified LasR protein binds directly to the vqsR promoter in the presence of 3O-C12-HSL. Point mutational analysis of the vqsR las box suggests that positions 3 and 18 in the las box are important for vqsR transcription, as assayed with a series of vqsRp-lacZ fusions. EMSA also shows that positions 3 and 18 are important for binding between the vqsR promoter and LasR. Our results demonstrate that the las system directly regulates vqsR, and certain nucleotides in the las box are crucial for LasR binding and activation of the vqsR promoter.
细菌通过群体感应(QS)级联相互通讯,以调节细胞密度依赖性基因表达。在铜绿假单胞菌中,两个已知的QS系统,即las和rhl,控制许多与毒力、致病性和生物膜形成相关的因子的表达。对las和rhl调控子的微阵列研究使我们提出假说,即QS调控子中的复杂层级由多个转录调节因子组成。在此,我们研究了一个QS调控基因vqsR,它编码一种可能的转录调节因子,其上游有一个推定的20 bp操纵序列(las框)。确定了vqsR的转录起始位点。通过检查一系列vqsR启动子-lacZ融合体鉴定了vqsR启动子。此外,一个从质粒表达LasR或RhlR蛋白的大肠杆菌系统表明,las系统是vqsR的主要调节因子。电泳迁移率变动分析(EMSA)表明,在3O-C12-HSL存在的情况下,纯化的LasR蛋白直接与vqsR启动子结合。对vqsR las框的点突变分析表明,las框中的第3位和第18位对于vqsR转录很重要,这是通过一系列vqsRp-lacZ融合体检测的。EMSA还表明,第3位和第18位对于vqsR启动子与LasR之间的结合很重要。我们的结果表明,las系统直接调节vqsR,并且las框中的某些核苷酸对于LasR结合和vqsR启动子的激活至关重要。