Min J, Zassenhaus H P
Department of Microbiology, Saint Louis University Medical School, Missouri 63104.
J Bacteriol. 1993 Oct;175(19):6245-53. doi: 10.1128/jb.175.19.6245-6253.1993.
We have employed cell-free transcription reactions with mitochondria isolated from Saccharomyces cerevisiae to study the mechanism of RNA turnover. The specificity of RNA turnover was preserved in these preparations, as were other RNA-processing reactions, including splicing, 3' end formation of mRNAs, and maturation of rRNAs. Turnover of nascent RNAs was found to occur exonucleolytically; endonucleolytic cleavage products were not detected during turnover of the omega intron RNA, which was studied in detail. However, these experiments still leave open the possibility that endonucleolytic cleavage products with very short half-lives are kinetic intermediates in the decay of omega RNA. Exonucleolytic turnover was regulated by nucleotide triphosphates and required their hydrolysis. A unique signature of this regulation was that any one of the eight standard ribo- or deoxyribonucleotide triphosphates supported RNA turnover. A novel hybrid selection protocol was used to determine the turnover rates of the 5', middle, and 3' portions of one mitochondrial transcript, the omega intron RNA. The results suggested that degradation along that transcript occurred with a 3'-->5' polarity. The similarity between features of mitochondrial RNA turnover and the properties of a nucleotide triphosphate-dependent 3' exoribonuclease that has been purified from yeast mitochondria suggests that this single enzyme is a key activity whose regulation is involved in the specificity of mitochondrial RNA turnover.
我们利用从酿酒酵母中分离出的线粒体进行无细胞转录反应,以研究RNA周转机制。在这些制备物中,RNA周转的特异性得以保留,其他RNA加工反应,包括剪接、mRNA的3'末端形成以及rRNA的成熟也同样如此。发现新生RNA的周转以核酸外切方式发生;在对ω内含子RNA周转的详细研究过程中,未检测到核酸内切切割产物。然而,这些实验仍未排除半衰期极短的核酸内切切割产物是ωRNA衰变动力学中间体的可能性。核酸外切周转受三磷酸核苷酸调节且需要其水解。这种调节的一个独特特征是八种标准核糖或脱氧核糖三磷酸核苷酸中的任何一种都能支持RNA周转。一种新颖的杂交选择方案被用于确定一种线粒体转录本(ω内含子RNA)的5'端、中间部分和3'端的周转速率。结果表明,沿着该转录本的降解以3'→5'的极性发生。线粒体RNA周转特征与从酵母线粒体中纯化出的一种依赖三磷酸核苷酸的3'核酸外切酶的性质之间的相似性表明,这种单一酶是一种关键活性,其调节参与了线粒体RNA周转的特异性。