NIZO food research, PO Box 20, 6710 BA Ede, The Netherlands.
TI Food and Nutrition, PO Box 557, 6700 AN Wageningen, The Netherlands.
Microbiology (Reading). 2010 Mar;156(Pt 3):695-707. doi: 10.1099/mic.0.034165-0. Epub 2009 Nov 26.
Sigma factors direct specific binding of the bacterial RNA polymerase to the promoter. Here we present the elucidation of the sigma(54 ) regulon in Lactobacillus plantarum. A sequence-based regulon prediction of sigma(54)-dependent promoters revealed an operon encoding a mannose phosphotransferase system (PTS) as the best candidate for sigma(54)-mediated control. A sigma (54) (rpoN) mutant derivative did not grow on mannose, confirming this prediction. Additional mutational analyses established the presence of one functional mannose PTS in L. plantarum, the expression of which is controlled by sigma(54) in concert with the sigma(54)-activator ManR. Genome-wide transcription comparison of the wild-type and the rpoN-deletion strain revealed nine upregulated genes in the wild-type, including the genes of the mannose PTS, and 21 upregulated genes in the rpoN mutant. The sigma(54)-controlled mannose PTS was shown also to transport glucose in L. plantarum wild-type cells, and its presence causes a lag phase when cultures are transferred from glucose- to galactose-containing media. The mannose PTS appeared to drain phosphoenolpyruvate (PEP) pools in resting cells, since no PEP could be detected in resting wild-type cells, while mannose PTS mutant derivatives contained 1-3 muM PEP (mg protein)(-1 ). Our data provide new insight into the role of sigma( 54) in L. plantarum and possibly other Gram-positive bacteria in the control of expression of an important glucose transporter that contributes to glucose-mediated catabolite control via modulation of the PEP pool.
西格玛因子指导细菌 RNA 聚合酶与启动子的特异性结合。在这里,我们阐述了植物乳杆菌中 sigma(54)调控子的阐明。基于序列的 sigma(54)依赖启动子的调控子预测揭示了一个操纵子,该操纵子编码一种甘露糖磷酸转移酶系统 (PTS),是 sigma(54)介导控制的最佳候选者。sigma(54)(rpoN)突变衍生物不能在甘露糖上生长,证实了这一预测。进一步的突变分析确定了植物乳杆菌中存在一个功能齐全的甘露糖 PTS,其表达受 sigma(54)与 sigma(54)-激活剂 ManR 共同控制。野生型和 rpoN 缺失株的全基因组转录比较显示,野生型中有 9 个上调基因,包括甘露糖 PTS 的基因,rpoN 突变株中有 21 个上调基因。在植物乳杆菌野生型细胞中,sigma(54)控制的甘露糖 PTS 也被证明能够运输葡萄糖,并且当培养物从含有葡萄糖的培养基转移到含有半乳糖的培养基时,其存在会导致滞后期。甘露糖 PTS 似乎耗尽了静止细胞中的磷酸烯醇丙酮酸 (PEP) 池,因为在静止的野生型细胞中检测不到 PEP,而甘露糖 PTS 突变衍生物中含有 1-3 muM PEP(mg 蛋白)(-1)。我们的数据为 sigma(54)在植物乳杆菌和其他革兰氏阳性细菌中控制重要葡萄糖转运蛋白的表达提供了新的见解,该蛋白通过调节 PEP 池对葡萄糖介导的分解代谢控制起作用。