Tanaka Yuya, Okai Naoko, Teramoto Haruhiko, Inui Masayuki, Yukawa Hideaki
Research Institute of Innovative Technology for the Earth (RITE), 9-2, Kizugawadai, Kizugawa, Kyoto 619-0292, Japan.
Microbiology (Reading). 2008 Jan;154(Pt 1):264-274. doi: 10.1099/mic.0.2007/008862-0.
The phosphoenolpyruvate : carbohydrate phosphotransferase system (PTS) catalyses the transport of carbohydrates by coupling carbohydrate translocation and phosphorylation. In Corynebacterium glutamicum R, the genes ptsH and ptsI encode general components of the PTS, and genes ptsF, ptsS and ptsG each encode fructose-, sucrose- and glucose-specific components of the PTS, respectively. In this study, we examined the mRNA levels of the pts genes in the presence or absence of PTS sugars. Glucose elevated the expression of ptsG, ptsH and ptsI genes, whereas fructose and sucrose induced the expression of all the pts genes examined, i.e. ptsF, -S, -G, -H and -I. We determined the transcriptional start sites of the pts genes and found that these promoters were activated in the presence of fructose. Disruption of fruR, which is a deoxyribonucleoside repressor (DeoR)-type transcriptional regulator co-transcribed with ptsF, resulted in enhanced induction of the fructose-pts operon, ptsI, and ptsH expression in response to fructose, indicating that FruR attenuates the induction of ptsI, ptsH and fructose-pts by fructose.
碳水化合物磷酸转移酶系统(PTS)通过碳水化合物转运与磷酸化偶联来催化碳水化合物的运输。在谷氨酸棒杆菌R中,ptsH和ptsI基因编码PTS的通用组分,而ptsF、ptsS和ptsG基因分别编码PTS的果糖特异性、蔗糖特异性和葡萄糖特异性组分。在本研究中,我们检测了在有或没有PTS糖类存在的情况下pts基因的mRNA水平。葡萄糖提高了ptsG、ptsH和ptsI基因的表达,而果糖和蔗糖诱导了所有检测的pts基因(即ptsF、-S、-G、-H和-I)的表达。我们确定了pts基因的转录起始位点,发现这些启动子在果糖存在的情况下被激活。fruR基因(它是与ptsF共转录的脱氧核糖核苷阻遏物(DeoR)型转录调节因子)的破坏导致果糖-pts操纵子、ptsI和ptsH在对果糖的应答中表达的诱导增强,表明FruR减弱果糖对ptsI、ptsH和果糖-pts的诱导。