Matsunaga J, Dyer M, Simons E L, Simons R W
Department of Microbiology and Molecular Genetics, University of California, Los Angeles 90095, USA.
Mol Microbiol. 1996 Dec;22(5):977-89. doi: 10.1046/j.1365-2958.1996.01529.x.
Escherichia coli rnc-era-recO operon (rnc operon) expression is negatively autoregulated at the level of message stability by ribonuclease III (RNase III), which is encoded by the rnc gene. RNase III, a double-stranded RNA-specific endoribonuclease involved in rRNA and mRNA processing and degradation, cleaves a stemloop structure in the 5' untranslated leader, initiating rapid decay of the rnc operon mRNA. Here, we examine rnc operon expression and regulation in greater detail. Northern, primer extension, and lacZ fusion analyses show that a single promoter (rncP) specifies two principal mRNAs: the 1.9 kb rnc-era transcript and the less-abundant 3.7 kb RNA encoding rnc-era-recO and the downstream pdxJ and acpS genes. A 1.3 kb pdxJ-acpS RNA is transcribed from a promoter (pdxP) located within recO. About 70% of pdxJ transcription depends on transcription from rncP. Both promoters were characterized genetically. RNase III reduces 1.9 kb and 3.7 kb transcript levels and stability, and corresponding effects are seen with genetic fusions. These detailed studies enabled us to show that the first 378 nucleotides of the rnc transcript comprise a portable RNA stability element (rncO) that contains all of the cis-acting elements required for RNase III-initiated decay of the rnc mRNA as well as the heterologous lacZ transcript. Moreover, mutations in rncO that block RNase III cleavage also block control, showing that RNase III initiates mRNA decay by cleaving at a single site.
大肠杆菌rnc-era-recO操纵子(rnc操纵子)的表达在信息稳定性水平上受到核糖核酸酶III(RNase III)的负向自我调节,RNase III由rnc基因编码。RNase III是一种参与rRNA和mRNA加工及降解的双链RNA特异性内切核糖核酸酶,它切割5'非翻译前导区的茎环结构,引发rnc操纵子mRNA的快速降解。在此,我们更详细地研究rnc操纵子的表达和调控。Northern印迹、引物延伸和lacZ融合分析表明,单个启动子(rncP)产生两种主要的mRNA:1.9 kb的rnc-era转录本和丰度较低的3.7 kb RNA,后者编码rnc-era-recO以及下游的pdxJ和acpS基因。1.3 kb的pdxJ-acpS RNA从位于recO内的一个启动子(pdxP)转录而来。约70%的pdxJ转录依赖于rncP的转录。两个启动子都进行了遗传学表征。RNase III降低了1.9 kb和3.7 kb转录本的水平和稳定性,并且在基因融合实验中也观察到了相应的效应。这些详细研究使我们能够证明,rnc转录本的前378个核苷酸包含一个可移植的RNA稳定性元件(rncO),它包含RNase III引发rnc mRNA以及异源lacZ转录本降解所需的所有顺式作用元件。此外,rncO中阻止RNase III切割的突变也会阻断调控,这表明RNase III通过在单个位点切割来启动mRNA降解。