Hsu L M, Zagorski J, Fournier M J
J Mol Biol. 1984 Sep 25;178(3):509-31. doi: 10.1016/0022-2836(84)90236-5.
The structure of the Escherichia coli gene coding for the metabolically stable 4.5 S RNA has been determined by cloning and DNA sequence analysis. Results from Southern hybridization assays carried out prior to cloning show the 4.5 S DNA to be limited to a single locus in the E. coli K12 genome. A 5.4 X 10(3) base DNA fragment containing the 4.5 S DNA was cloned into plasmid pBR322 for restriction, hybridization and sequence analyses. Cells harboring the cloned gene overproduce the 4.5 S RNA by 15-fold under normal culturing conditions; however, no effect on growth rate is observed. DNA sequencing revealed only one copy of the 4.5 S RNA gene, with a deduced RNA sequence both longer at 114 bases and slightly different from the RNA sequence reported earlier. A promoter structure immediately preceding the structural gene shows good agreement with the prokaryotic consensus sequence at both the -35 and -10 regions. In addition, a G + C-rich sequence between the Pribnow box and the start of transcription agrees well with an apparent consensus sequence found for other stable RNA genes also under stringent control. No clearly recognizable termination signal was found immediately downstream from the 3' terminus of the 4.5 S DNA, although structural elements with that potential appear to occur. A potential coding sequence for a protein occurs about 100 bases downstream from the 4.5 S DNA, suggesting the possibility of a dual function 4.5 S RNA-mRNA transcript.
通过克隆和DNA序列分析,已确定了编码代谢稳定的4.5S RNA的大肠杆菌基因的结构。在克隆之前进行的Southern杂交分析结果表明,4.5S DNA在大肠杆菌K12基因组中仅限于单个位点。将一个包含4.5S DNA的5.4×10³碱基的DNA片段克隆到质粒pBR322中,用于限制性分析、杂交分析和序列分析。携带克隆基因的细胞在正常培养条件下会使4.5S RNA过量产生15倍;然而,未观察到对生长速率有影响。DNA测序显示4.5S RNA基因只有一个拷贝,推导的RNA序列在114个碱基处更长,并且与先前报道的RNA序列略有不同。结构基因之前的启动子结构在-35和-10区域与原核生物共有序列都有很好的一致性。此外,Pribnow框和转录起始之间富含G + C的序列与在严格控制下的其他稳定RNA基因中发现的明显共有序列非常吻合。在4.5S DNA的3'末端下游没有立即发现明显可识别的终止信号,尽管似乎存在具有该潜力的结构元件。在4.5S DNA下游约100个碱基处出现了一个潜在的蛋白质编码序列,这表明存在双功能4.5S RNA - mRNA转录本的可能性。