Department of Life Science (BK21 program), Chung-Ang University, Seoul, Republic of Korea.
Mol Microbiol. 2010 Jan;75(2):413-25. doi: 10.1111/j.1365-2958.2009.06986.x. Epub 2009 Nov 25.
During the course of experiments aimed at identifying genes with ribonuclease III (RNase III)-dependent expression in Escherichia coli, we found that steady state levels of bdm mRNA were dependent on cellular concentrations of RNase III. The half-lives of adventitiously overexpressed bdm mRNA and the activities of a transcriptional bdm'-'cat fusion were observed to be dependent on cellular concentrations of RNase III, indicating the existence of cis-acting elements in bdm mRNA responsive to RNase III. In vitro and in vivo cleavage analyses of bdm mRNA identified two RNase III cleavage motifs, one in the 5'-untranslated region and the other in the coding region of bdm mRNA, and indicated that RNase III cleavages in the coding region constitute a rate-determining step for bdm mRNA degradation. We also discovered that downregulation of the ribonucleolytic activity of RNase III is required for the sustained elevation of RcsB-induced bdm mRNA levels during osmotic stress and that cells overexpressing bdm form biofilms more efficiently. These findings indicate that the Rcs signalling system has an additional regulatory pathway that functions to modulate bdm expression and consequently, adapt E. coli cells to osmotic stress.
在旨在鉴定大肠杆菌中具有核糖核酸酶 III(RNase III)依赖性表达的基因的实验过程中,我们发现 bdm mRNA 的稳态水平依赖于细胞中 RNase III 的浓度。意外过表达的 bdm mRNA 的半衰期和转录 bdm'-'cat 融合体的活性被观察到依赖于细胞中 RNase III 的浓度,表明 bdm mRNA 中存在对 RNase III 有反应的顺式作用元件。bdm mRNA 的体外和体内切割分析鉴定了两个 RNase III 切割基序,一个在 5'-非翻译区,另一个在 bdm mRNA 的编码区,并表明编码区中的 RNase III 切割是 bdm mRNA 降解的限速步骤。我们还发现,在渗透胁迫期间,RcsB 诱导的 bdm mRNA 水平持续升高需要降低 RNase III 的核糖核酸酶活性,并且过表达 bdm 的细胞更有效地形成生物膜。这些发现表明,Rcs 信号系统具有额外的调节途径,用于调节 bdm 的表达,从而使大肠杆菌细胞适应渗透胁迫。