Koraimann G, Schroller C, Graus H, Angerer D, Teferle K, Högenauer G
Institut für Mikrobiologie, Karl-Franzens-Universität Graz, Austria.
Mol Microbiol. 1993 Aug;9(4):717-27. doi: 10.1111/j.1365-2958.1993.tb01732.x.
Specific cleavage of mRNAs by RNase III has been shown to control the expression of several Escherichia coli genes. We show here that the expression of gene 19 of the conjugative resistance plasmid R1 is controlled in its expression by the same endoribonuclease. In vivo studies revealed that a DNA fragment of 150 nucleotides including a perfect 22 nucleotide inverted repeat in the gene 19 coding region is responsible for the low expression of the gene both at the protein and the RNA levels. By using a translational gene 19-lacZ fusion in isogenic RNase III+ and RNase III- strains we could identify RNase III as the key element in the down-regulation of gene 19 expression. The sequencing of in vitro generated and RNase III-digested transcripts confirmed the in vivo studies and revealed the exact positions of the RNase III cleavage sites within the coding part of the gene 19 transcript. The in vitro determined RNase III cleavage of gene 19 mRNA was confirmed by in vivo primer extension analysis. Finally, we could show that an exchange of three nucleotides within the RNase III recognition site abolished RNase III cleavage in vitro.
RNase III对mRNA的特异性切割已被证明可调控几种大肠杆菌基因的表达。我们在此表明,接合型耐药质粒R1的基因19的表达受同一种核糖核酸内切酶调控。体内研究显示,基因19编码区中一个包含完美22个核苷酸反向重复序列的150个核苷酸的DNA片段,在蛋白质和RNA水平上都导致了该基因的低表达。通过在同基因的RNase III+和RNase III-菌株中使用基因19与lacZ的翻译融合,我们确定RNase III是基因19表达下调的关键因素。对体外生成并经RNase III消化的转录本进行测序,证实了体内研究结果,并揭示了基因19转录本编码部分内RNase III切割位点的确切位置。体内引物延伸分析证实了体外测定的基因19 mRNA的RNase III切割。最后,我们发现,RNase III识别位点内三个核苷酸的交换消除了体外的RNase III切割。