Park B H, Lee J H, Kim M, Lee Y
Department of Chemistry, Center for Molecular Design and Synthesis, Korea Advanced Institute of Science and Technology, Taejon, 305-701, Korea.
Biochem Biophys Res Commun. 2000 Feb 5;268(1):136-40. doi: 10.1006/bbrc.2000.2095.
Escherichia coli RNase P, an RNA-processing enzyme that cleaves precursor tRNAs to generate the mature 5'-end, is composed of a catalytic component (M1 RNA) and a protein cofactor (C5 protein). In this study, effects of C5 protein on the RNase P catalysis with a precursor E. coli tRNA(Phe) having a single mismatch in the acceptor stem were examined. This mutant precursor unexpectedly generated upstream cleavage products at the -8 position as well as normal cleavage products at the +1 position. The cleavage at the -8 position was essentially effective only in the presence of C5 protein. Possible secondary structures for cleavage at the -8 position deviate significantly from the structures of the known RNase P substrates, implying that C5 protein can allow the enzyme to broaden the substrate specificity more than previously appreciated.
大肠杆菌核糖核酸酶P是一种RNA加工酶,可切割前体tRNA以产生成熟的5'端,它由催化成分(M1 RNA)和蛋白质辅因子(C5蛋白)组成。在本研究中,研究了C5蛋白对用在受体茎中有单个错配的前体大肠杆菌tRNA(Phe)进行核糖核酸酶P催化的影响。这种突变前体意外地在-8位置产生了上游切割产物以及在+1位置的正常切割产物。-8位置的切割仅在C5蛋白存在下才基本有效。-8位置切割的可能二级结构与已知核糖核酸酶P底物的结构有显著差异,这意味着C5蛋白可使该酶比以前认识到的更能拓宽底物特异性。