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The RNR motif of B. subtilis RNase P protein interacts with both PRNA and pre-tRNA to stabilize an active conformer

机译:枯草芽孢杆菌RNase P蛋白的RNR基序与PRNA和pre-tRNA相互作用以稳定活性构象体

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摘要

Ribonuclease P (RNase P) catalyzes the metal-dependent 5′ end maturation of precursor tRNAs (pre-tRNAs). In Bacteria, RNase P is composed of a catalytic RNA (PRNA) and a protein subunit (P protein) necessary for function in vivo. The P protein enhances pre-tRNA affinity, selectivity, and cleavage efficiency, as well as modulates the cation requirement for RNase P function. Bacterial P proteins share little sequence conservation although the protein structures are homologous. Here we combine site-directed mutagenesis, affinity measurements, and single turnover kinetics to demonstrate that two residues (R60 and R62) in the most highly conserved region of the P protein, the RNR motif (R60–R68 in Bacillus subtilis), stabilize PRNA complexes with both P protein (PRNA•P protein) and pre-tRNA (PRNA•P protein•pre-tRNA). Additionally, these data indicate that the RNR motif enhances a metal-stabilized conformational change in RNase P that accompanies substrate binding and is essential for efficient catalysis. Stabilization of this conformational change contributes to both the decreased metal requirement and the enhanced substrate recognition of the RNase P holoenzyme, illuminating the role of the most highly conserved region of P protein in the RNase P reaction pathway.
机译:核糖核酸酶P(RNase P)催化前体tRNA(pre-tRNA)的金属依赖性5'末端成熟。在细菌中,RNase P由催化RNA(PRNA)和体内功能所需的蛋白质亚基(P蛋白)组成。 P蛋白增强了tRNA的亲和力,选择性和切割效率,并调节了RNase P功能所需的阳离子。尽管蛋白质结构是同源的,但细菌P蛋白几乎没有序列保守性。在这里,我们结合了定点诱变,亲和力测量和单周转动力学,证明了P蛋白最保守的区域RNR基序(枯草芽孢杆菌中的R60–R68)中的两个残基(R60和R62)稳定了PRNA与P蛋白(PRNA•P蛋白)和pre-tRNA(PRNA•P蛋白•pre-tRNA)复合。另外,这些数据表明RNR基序增强了RNase P中金属稳定的构象变化,伴随着底物结合,对于有效催化是必不可少的。这种构象变化的稳定有助于降低金属需求和增强RNase P全酶的底物识别,这说明了RNase P反应途径中P蛋白最保守的区域的作用。

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