Neely M N, Olson E R
Department of Biotechnology, Parke-Davis Pharmaceutical Research, Warner Lambert Inc., Ann Arbor, Michigan 48105, USA.
J Bacteriol. 1996 Sep;178(18):5522-8. doi: 10.1128/jb.178.18.5522-5528.1996.
The Escherichia coli cadBA genes are regulated at the transcriptional level by external pH and lysine. The membrane-localized CadC protein is required for activation of this operon under inducing conditions, which include acidic external pH, lysine, and oxygen limitation. To better understand the mechanism by which CadC functions, the kinetics of cadBA expression as a function of pH and lysine were examined. By primer extension assays, cadBA expression was detected within 4 min following exposure of cells to one of the inducing stimuli (low pH or lysine), provided that the cells had first been grown to steady state in the presence of the other inducing stimulus. The induction time was three to four times longer when both inducing stimuli were added simultaneously. cadBA expression was shut off within 4 min following a shift from acidic to neutral pH. Treatment of cells with chloramphenicol prevented induction by acidic pH and lysine. Transcription of lysP (encodes a lysine transporter) was also examined, since it is a negative regulator of cadBA expression in the absence of lysine. lysP expression was repressed by lysine but not influenced by pH. Putative transcription start sites for lysP and cadC were determined. Together, these data suggest that CadC senses the lysine- and pH-induced signals separately and that one of the roles of lysine in inducing cadBA may be to repress expression of lysP, thus eliminating the repressing effects of LysP.
大肠杆菌cadBA基因在转录水平上受外部pH值和赖氨酸的调控。在诱导条件下,包括酸性外部pH值、赖氨酸和氧限制,激活该操纵子需要膜定位的CadC蛋白。为了更好地理解CadC发挥作用的机制,研究了cadBA表达随pH值和赖氨酸变化的动力学。通过引物延伸分析,在细胞暴露于其中一种诱导刺激(低pH值或赖氨酸)后4分钟内检测到cadBA表达,前提是细胞首先在另一种诱导刺激存在的情况下生长至稳定状态。当同时添加两种诱导刺激时,诱导时间要长三到四倍。从酸性pH值转变为中性pH值后4分钟内,cadBA表达关闭。用氯霉素处理细胞可防止酸性pH值和赖氨酸的诱导。还检测了lysP(编码赖氨酸转运蛋白)的转录,因为在没有赖氨酸的情况下它是cadBA表达的负调节因子。lysP表达受赖氨酸抑制,但不受pH值影响。确定了lysP和cadC的推定转录起始位点。这些数据共同表明,CadC分别感知赖氨酸和pH值诱导的信号,赖氨酸诱导cadBA的作用之一可能是抑制lysP的表达,从而消除LysP的抑制作用。