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核糖核酸酶P RNA的催化作用:独特特征与前所未有的活性位点可塑性

Catalysis by RNase P RNA: unique features and unprecedented active site plasticity.

作者信息

Persson Tina, Cuzic Simona, Hartmann Roland K

机构信息

Universität zu Lübeck, Institut für Biochemie, Ratzeburger Allee 160, D-23538 Lübeck, Germany.

出版信息

J Biol Chem. 2003 Oct 31;278(44):43394-401. doi: 10.1074/jbc.M305939200. Epub 2003 Aug 6.

DOI:10.1074/jbc.M305939200
PMID:12904300
Abstract

Metal ions are essential cofactors for precursor tRNA (ptRNA) processing by bacterial RNase P. The ribose 2'-OH at nucleotide (nt) -1 of ptRNAs is known to contribute to positioning of catalytic Me2+. To investigate the catalytic process, we used ptRNAs with single 2'-deoxy (2'-H), 2'-amino (2'-N), or 2'-fluoro (2'-F) modifications at the cleavage site (nt -1). 2' modifications had small (2.4-7.7-fold) effects on ptRNA binding to E. coli RNase P RNA in the ground state, decreasing substrate affinity in the order 2'-OH > 2'-F > 2'-N > 2'-H. Effects on the rate of the chemical step (about 10-fold for 2'-F, almost 150-fold for 2'-H and 2'-N) were much stronger, and, except for the 2'-N modification, resembled strikingly those observed in the Tetrahymena ribozyme-catalyzed reaction at corresponding position. Mn2+ rescued cleavage of the 2'-N but also the 2'-H-modified ptRNA, arguing against a direct metal ion coordination at this location. Miscleavage between nt -1 and -2 was observed for the 2'-N-ptRNA at low pH (further influenced by the base identities at nt -1 and +73), suggesting repulsion of a catalytic metal ion due to protonation of the amino group. Effects caused by the 2'-N modification at nt -1 of the substrate allowed us to substantiate a mechanistic difference in phosphodiester hydrolysis catalyzed by Escherichia coli RNase P RNA and the Tetrahymena ribozyme: a metal ion binds next to the 2' substituent at nt -1 in the reaction catalyzed by RNase P RNA, but not at the corresponding location in the Tetrahymena ribozyme reaction.

摘要

金属离子是细菌核糖核酸酶P加工前体tRNA(ptRNA)必不可少的辅助因子。已知ptRNA核苷酸(nt)-1处的核糖2'-羟基有助于催化性Me2+的定位。为了研究催化过程,我们使用了在切割位点(nt -1)具有单个2'-脱氧(2'-H)、2'-氨基(2'-N)或2'-氟(2'-F)修饰的ptRNA。2'修饰对基态下ptRNA与大肠杆菌核糖核酸酶P RNA的结合有较小(2.4 - 7.7倍)影响,底物亲和力按2'-OH > 2'-F > 2'-N > 2'-H的顺序降低。对化学步骤速率的影响(2'-F约为10倍,2'-H和2'-N几乎为150倍)要强得多,并且除了2'-N修饰外,与在嗜热四膜虫核酶催化反应中相应位置观察到的情况惊人地相似。Mn2+挽救了2'-N修饰的ptRNA以及2'-H修饰的ptRNA的切割,这表明该位置不存在直接的金属离子配位。在低pH下观察到2'-N - ptRNA在nt -1和-2之间发生错切(进一步受nt -1和+73处碱基性质的影响),这表明氨基质子化导致催化金属离子受到排斥。底物nt -1处的2'-N修饰所引起的效应使我们能够证实大肠杆菌核糖核酸酶P RNA和嗜热四膜虫核酶催化的磷酸二酯水解在机制上的差异:在核糖核酸酶P RNA催化的反应中,金属离子在nt -1处的2'取代基旁边结合,但在嗜热四膜虫核酶反应的相应位置则不然。

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