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tRNA的3'-CCA参与核糖核酸酶P对催化性镁离子的结合。

Participation of the 3'-CCA of tRNA in the binding of catalytic Mg2+ ions by ribonuclease P.

作者信息

Oh B K, Frank D N, Pace N R

机构信息

Department of Chemistry, Indiana University, Bloomington 47405, USA.

出版信息

Biochemistry. 1998 May 19;37(20):7277-83. doi: 10.1021/bi973100z.

Abstract

Ribonuclease P (RNase P) contains a catalytic RNA that cleaves precursor tRNA (pre-tRNA) to form the mature 5'-end of tRNA. Previous kinetic analyses with mutant pre-tRNAs indicated that both C residues of the invariant 3'-terminal CCA form specific interactions with RNase P RNA that contribute to the energetics of substrate binding (1, 2). In the present study, we have used single-turnover kinetic analysis to investigate whether specific changes in the 3'-terminal CCA influence the rate of the chemical step through which enzyme-bound substrate is converted to product (k2). At optimal ionic strength (1.0 M NH4Cl, 25 mM MgCl2), deletion or substitution of the 3'-proximal C residue (CCA) reduced the rate of the chemical step of cleavage (k2) by 60-fold. Similar changes to the 5'-proximal C residue (CCA) or the 3'-terminal A residue (CCA) reduced k2 only a few fold. Each mutant substrate exhibited weakened affinity for Mg2+, as measured by Hill plots, and the severity of these defects correlated with the observed reductions in k2. Furthermore, elevated concentrations of Mg2+ partially, but not completely, suppress the k2 defects caused by deletion or substitution of the 3'-proximal C residue. We conclude that the 3'-CCA of pre-tRNA, particularly the 3'-proximal C residue, comprises part of the catalytic pocket formed in the pre-tRNA-RNase P complex and participates in the binding of Mg2+ ions that are essential for catalysis by RNase P RNA.

摘要

核糖核酸酶P(RNase P)含有一种催化性RNA,可切割前体tRNA(pre-tRNA)以形成tRNA的成熟5'末端。先前对突变前体tRNA的动力学分析表明,不变的3'末端CCA的两个C残基与RNase P RNA形成特异性相互作用,这有助于底物结合的能量学(1,2)。在本研究中,我们使用单周转动力学分析来研究3'末端CCA的特定变化是否会影响酶结合底物转化为产物的化学步骤的速率(k2)。在最佳离子强度(1.0 M NH4Cl,25 mM MgCl2)下,3'近端C残基(CCA)的缺失或取代使切割化学步骤的速率(k2)降低了60倍。对5'近端C残基(CCA)或3'末端A残基(CCA)进行类似的改变仅使k2降低了几倍。通过希尔图测量,每个突变底物对Mg2+的亲和力都减弱了,这些缺陷的严重程度与观察到的k2降低相关。此外,升高的Mg2+浓度部分但不完全抑制由3'近端C残基的缺失或取代引起的k2缺陷。我们得出结论,pre-tRNA的3'-CCA,特别是3'近端C残基,构成了在pre-tRNA-RNase P复合物中形成的催化口袋的一部分,并参与了对RNase P RNA催化至关重要的Mg2+离子的结合。

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