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首页> 外文期刊>Journal of Molecular Biology >Binding of C5 protein to P RNA enhances the rate constant for catalysis for P RNA processing of pre-tRNAs lacking a consensus (+ 1)/C(+ 72) pair.
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Binding of C5 protein to P RNA enhances the rate constant for catalysis for P RNA processing of pre-tRNAs lacking a consensus (+ 1)/C(+ 72) pair.

机译:C5蛋白与P RNA的结合提高了速率常数,用于催化缺乏共有(+1)/ C(+72)对的pre-tRNA的P RNA加工。

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摘要

The RNA subunit of the ribonucleoprotein enzyme ribonuclease P (RNase P (P RNA) contains the active site, but binding of Escherichia coli RNase P protein (C5) to P RNA increases the rate constant for catalysis for certain pre-tRNA substrates up to 1000-fold. Structure-swapping experiments between a substrate that is cleaved slowly by P RNA alone (pre-tRNA(f-met605)) and one that is cleaved quickly (pre-tRNA(met608)) pinpoint the characteristic C(+1)/A(+72) base pair of initiator tRNA(f-met) as the sole determinant of slow RNA-alone catalysis. Unlike other substrate modifications that slow RNA-alone catalysis, the presence of a C(+1)/A(+72) base pair reduces the rate constant for processing at both correct and miscleavage sites, indicating an indirect but nonetheless important role in catalysis. Analysis of the Mg(2)(+) dependence of apparent catalytic rate constants for pre-tRNA(met608) and a pre-tRNA(met608) (+1)C/(+72)A mutant provides evidence that C5 promotes rate enhancement primarily by compensating for the decrease in the affinity of metal ions important for catalysis engendered by the presence of the CA pair. Together, these results support and extend current models for RNase P substrate recognition in which contacts involving the conserved (+1)G/C(+72) pair of tRNA stabilize functional metal ion binding. Additionally, these observations suggest that C5 protein has evolved to compensate for tRNA variation at positions important for binding to P RNA, allowing for tRNA specialization.
机译:核糖核酸酶核糖核酸酶P(RNase P(P RNA))的RNA亚基包含活性位点,但大肠杆菌RNase P蛋白(C5)与P RNA的结合增加了某些t-preRNA底物的催化速率常数,最高可达1000折叠:在仅被P RNA缓慢切割的底物(pre-tRNA(f-met605))和被快速切割的底物(pre-tRNA(met608))之间进行结构交换实验,可查明特征C(+1) / A(+72)碱基对的tRNA(f-met)引发剂是慢速单独RNA催化的唯一决定因素。与其他底物修饰不同,慢速单独RNA的催化作用是C(+1)/ A( +72)碱基对降低了在正确位点和错位位点处加工的速率常数,表明在催化中具有间接但仍然重要的作用。前tRNA(met608)的表观速率常数的Mg(2)(+)依赖性分析)和pre-tRNA(met608)(+1)C /(+ 72)A突变体提供的证据表明C5可以促进速率增强通常通过补偿由于CA对的存在而引起的对于催化重要的金属离子的亲和力的降低。总之,这些结果支持并扩展了当前用于RNase P底物识别的模型,其中涉及tRNA保守(+1)G / C(+72)对的接触稳定了功能性金属离子结合。此外,这些观察结果表明,C5蛋白已经进化为补偿在与P RNA结合重要的位置上的tRNA变异,从而允许tRNA特化。

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