Xiu Zhi-Long, Chang Zeng-Yi, Zeng An-Ping
Department of Biotechnology, Dalian University of Technology, Dalian 116012, P.R. China.
Biotechnol Prog. 2002 Jul-Aug;18(4):686-93. doi: 10.1021/bp020052n.
The trp operon encodes the five genes for the enzymes required to convert chorismate to tryptophan, and its switching on and off is controlled by both feedback repression and attenuation in response to different levels of tryptophan in the cell. Repression of the operon occurs when tryptophan concentration is high, and attenuation fine-tunes the transcription level at a lower cellular concentration of tryptophan. An extended mathematical model is established in this study to describe the switching on and off of the trp operon by considering the integrated effects of repression and attenuation. The influences of cell growth rate on the biosynthesis of tryptophan, stability and dynamic behavior of the trp operon are investigated. Sustained oscillations of tryptophan levels are predicted from the regulated turning on and off of the trp operon. It is interesting to note that during such oscillations the regulation of transcription displays a kind of "on" and "off" state in terms of gene expression, indicating the existence of a genetic circuit or switch in the regulation of the trp operon. Time lags between transcription and translation are also predicted and may explain the occurrence of such oscillation phenomenon.
色氨酸操纵子编码将分支酸转化为色氨酸所需的五种酶的基因,其开启和关闭受反馈抑制和衰减的控制,以响应细胞中不同水平的色氨酸。当色氨酸浓度较高时,操纵子受到抑制,而衰减则在色氨酸细胞浓度较低时微调转录水平。本研究建立了一个扩展的数学模型,通过考虑抑制和衰减的综合作用来描述色氨酸操纵子的开启和关闭。研究了细胞生长速率对色氨酸生物合成、色氨酸操纵子稳定性和动态行为的影响。通过色氨酸操纵子的调节开启和关闭预测出色氨酸水平的持续振荡。有趣的是,在这种振荡过程中,转录调节在基因表达方面呈现出一种“开”和“关”的状态,表明在色氨酸操纵子的调节中存在遗传回路或开关。还预测了转录和翻译之间的时间滞后,这可能解释了这种振荡现象的发生。