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核糖核酸酶P:一种tRNA加工核酶中的统一性与多样性

Ribonuclease P: unity and diversity in a tRNA processing ribozyme.

作者信息

Frank D N, Pace N R

机构信息

Department of Plant and Microbial Biology, University of California, Berkeley 94720-3102, USA.

出版信息

Annu Rev Biochem. 1998;67:153-80. doi: 10.1146/annurev.biochem.67.1.153.

Abstract

Ribonuclease P (RNase P) is the endoribonuclease that generates the mature 5'-ends of tRNA by removal of the 5'-leader elements of precursor-tRNAs. This enzyme has been characterized from representatives of all three domains of life (Archaea, Bacteria, and Eucarya) (1) as well as from mitochondria and chloroplasts. The cellular and mitochondrial RNase Ps are ribonucleoproteins, whereas the most extensively studied chloroplast RNase P (from spinach) is composed solely of protein. Remarkably, the RNA subunit of bacterial RNase P is catalytically active in vitro in the absence of the protein subunit (2). Although RNA-only activity has not been demonstrated for the archael, eucaryal, or mitochondrial RNAs, comparative sequence analysis has established that these RNAs are homologous (of common ancestry) to bacterial RNA. RNase P holoenzymes vary greatly in organizational complexity across the phylogenetic domains, primarily because of differences in the RNase P protein subunits: Mitochondrial, archaeal, and eucaryal holoenzymes contain larger, and perhaps more numerous, protein subunits than do the bacterial holoenzymes. However, that the nonbacterial RNase P RNAs retain significant structural similarity to their catalytically active bacterial counterparts indicates that the RNA remains the catalytic center of the enzyme.

摘要

核糖核酸酶P(RNase P)是一种内切核糖核酸酶,它通过去除前体tRNA的5'前导序列来生成成熟tRNA的5'末端。这种酶已在生命的所有三个域(古细菌、细菌和真核生物)的代表中得到表征(1),以及在线粒体和叶绿体中得到表征。细胞和线粒体中的RNase P是核糖核蛋白,而研究最广泛的叶绿体RNase P(来自菠菜)仅由蛋白质组成。值得注意的是,细菌RNase P的RNA亚基在体外没有蛋白质亚基的情况下具有催化活性(2)。尽管尚未证明古细菌、真核生物或线粒体RNA具有仅RNA的活性,但比较序列分析已确定这些RNA与细菌RNA是同源的(具有共同祖先)。RNase P全酶在系统发育域中的组织复杂性差异很大,主要是因为RNase P蛋白质亚基存在差异:线粒体、古细菌和真核生物全酶比细菌全酶含有更大、可能也更多的蛋白质亚基。然而,非细菌RNase P RNA与其具有催化活性的细菌对应物保持着显著的结构相似性,这表明RNA仍然是该酶的催化中心。

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