Wehland M, Kiecker C, Coplin D L, Kelm O, Saenger W, Bernhard F
Freie Universität Berlin, Institut für Kristallographie, Takustrasse 6, D-14195 Berlin, Germany.
J Biol Chem. 1999 Feb 5;274(6):3300-7. doi: 10.1074/jbc.274.6.3300.
The regulation of capsule synthesis (Rcs) regulatory network is responsible for the induction of exopolysaccharide biosynthesis in many enterobacterial species. We have previously shown that two transcriptional regulators, RcsA and RcsB, do bind as a heterodimer to the promoter of amsG, the first reading frame in the operon for amylovoran biosynthesis in the plant pathogenic bacterium Erwinia amylovora. We now identified a 23-base pair fragment from position -555 to -533 upstream of the translational start site of amsG as sufficient for the specific binding of the Rcs proteins. In addition, we could detect an RcsA/RcsB-binding site in a corresponding region of the promoter of cpsA, the homologous counterpart to the E. amylovora amsG gene in the operon for stewartan biosynthesis of Pantoea stewartii. The specificity and characteristic parameters of the protein-DNA interaction were analyzed by DNA retardation, protein-DNA cross-linking, and directed mutagenesis. The central core motif TRVGAAWAWTSYG of the amsG promoter was found to be most important for the specific interaction with RcsA/RcsB, as evaluated by mutational analysis and an in vitro selection approach. The wild type P. stewartii Rcs binding motif is degenerated in two positions and an up-mutation according to our consensus motif resulted in about a 5-fold increased affinity of the RcsA/RcsB proteins.
荚膜合成调控(Rcs)调控网络负责诱导许多肠杆菌科细菌中的胞外多糖生物合成。我们之前已经表明,两个转录调节因子RcsA和RcsB作为异源二聚体与amsG启动子结合,amsG是植物致病细菌梨火疫欧文氏菌中支链淀粉合成操纵子的第一个可读框。我们现在确定了amsG翻译起始位点上游-555至-533位置的一个23碱基对片段足以实现Rcs蛋白的特异性结合。此外,我们在cpsA启动子的相应区域检测到一个RcsA/RcsB结合位点,cpsA是斯氏泛菌支链淀粉合成操纵子中与梨火疫欧文氏菌amsG基因同源的对应物。通过DNA阻滞、蛋白质-DNA交联和定向诱变分析了蛋白质-DNA相互作用的特异性和特征参数。通过突变分析和体外筛选方法评估,发现amsG启动子的中心核心基序TRVGAAWAWTSYG对于与RcsA/RcsB的特异性相互作用最为重要。野生型斯氏泛菌的Rcs结合基序在两个位置发生了退化,根据我们的共有基序进行的向上突变导致RcsA/RcsB蛋白的亲和力增加了约5倍。