True H L, Celander D W
Department of Microbiology and College of Medicine, University of Illinois, Urbana, Illinois 61801, USA.
J Biol Chem. 1996 Jul 12;271(28):16559-66. doi: 10.1074/jbc.271.28.16559.
Ribonuclease P (RNase P) is responsible for the generation of mature 5' termini of tRNA. The RNA component of this complex encodes the enzymatic activity in bacteria and is itself catalytically active under appropriate conditions in vitro. The role of the subunits in eucaryotes has not yet been established. We have partially purified RNase P activity from the ciliate protozoan Tetrahymena thermophila to learn more about the biochemical characteristics of RNase P from a lower eucaryote. The Tetrahymena RNase P displays a pH optimum and temperature optimum characteristic of RNase P enzymes isolated from other organisms. The Km of the T. thermophila enzyme for pre-tRNAGln is 1.6 x 10(-7)M, which is comparable to the values reported for other examples of RNase P. The Tetrahymena RNase P is a ribonucleoprotein complex, as supported by its sensitivity to micrococcal nuclease and proteinase K. The buoyant density of the enzyme in Cs2SO4 is 1.42 g/ml, which suggests that the RNA component of the Tetrahymena enzyme comprises a significantly greater percentage of the holoenzyme than that determined for RNase P of other Eucarya or Archaea. The holoenzyme has a requirement for divalent cations displaying characteristics that are unique for RNase P but closely resemble preferences reported for the Tetrahymena group I intron RNA. Puromycin inhibits pre-tRNA processing by the Tetrahymena complex, and implications of the similarities between recognition of tRNA by ribosomal components and RNase P are discussed.
核糖核酸酶P(RNase P)负责生成tRNA成熟的5'末端。该复合物的RNA组分在细菌中编码酶活性,并且在体外适当条件下其本身具有催化活性。亚基在真核生物中的作用尚未确定。我们已从嗜热四膜虫这种纤毛原生动物中部分纯化了RNase P活性,以便更多地了解来自低等真核生物的RNase P的生化特性。嗜热四膜虫RNase P表现出从其他生物体中分离出的RNase P酶所具有的最适pH和最适温度特征。嗜热栖热菌酶对前体tRNAGln的Km为1.6×10^(-7)M,这与报道的其他RNase P实例的值相当。嗜热四膜虫RNase P是一种核糖核蛋白复合物,微球菌核酸酶和蛋白酶K对其的敏感性证明了这一点。该酶在Cs2SO4中的浮力密度为1.42 g/ml,这表明嗜热四膜虫酶的RNA组分在全酶中所占的百分比明显高于其他真核生物或古细菌的RNase P中所确定的比例。全酶对二价阳离子有需求,表现出RNase P特有的特征,但与报道的嗜热四膜虫I类内含子RNA的偏好非常相似。嘌呤霉素抑制嗜热四膜虫复合物对前体tRNA的加工,并讨论了核糖体组分与RNase P对tRNA识别之间相似性的意义。