Ito Kazutaka, Hamasaki Kohshin, Kayamori Aya, Nguyen Phuong Anh Thi, Amagai Kaoru, Wachi Masaaki
Department of Bioengineering, Tokyo Institute of Technology.
Biosci Biotechnol Biochem. 2013;77(12):2473-9. doi: 10.1271/bbb.130618. Epub 2013 Dec 7.
Escherichia coli RNase G is involved in the degradation of several mRNAs, including adhE and eno, which encode alcohol dehydrogenase and enolase respectively. Previous research indicates that the 5' untranslated region (5'-UTR) of adhE mRNA gives RNase G-dependency to lacZ mRNA when tagged at the 5'-end, but it has not been elucidated yet how RNase G recognizes adhE mRNA. Primer extension analysis revealed that RNase G cleaved a phosphodiester bond between -19A and -18C in the 5'-UTR (the A of the start codon was defined as +1). Site-directed mutagenesis indicated that RNase G did not recognize the nucleotides at -19 and -18. Random deletion analysis indicated that the sequence from -145 to -125 was required for RNase G-dependent degradation. Secondary structure prediction and further site-directed deletion suggested that the stem-loop structure, with a bubble in the stem, is required for RNaseG-dependent degradation of adhE mRNA.
大肠杆菌核糖核酸酶G参与多种信使核糖核酸(mRNA)的降解,包括分别编码乙醇脱氢酶和烯醇酶的adhE和eno mRNA。先前的研究表明,adhE mRNA的5'非翻译区(5'-UTR)在5'端标记时会使lacZ mRNA产生对核糖核酸酶G的依赖性,但核糖核酸酶G如何识别adhE mRNA尚未阐明。引物延伸分析表明,核糖核酸酶G在5'-UTR中-19A和-18C之间切割磷酸二酯键(起始密码子的A被定义为+1)。定点诱变表明,核糖核酸酶G不识别-19和-18位的核苷酸。随机缺失分析表明,-145至-125的序列是核糖核酸酶G依赖性降解所必需的。二级结构预测和进一步的定点缺失表明,茎中有气泡的茎环结构是核糖核酸酶G依赖性降解adhE mRNA所必需的。