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Substrate discrimination in RNase P RNA-mediated cleavage: importance of the structural environment of the RNase P cleavage site

机译:RNase P RNA介导的裂解中的底物区分:RNase P裂解位点的结构环境的重要性

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摘要

Like the translational elongation factor EF-Tu, RNase P interacts with a large number of substrates where RNase P with its RNA subunit generates tRNAs with matured 5' termini by cleaving tRNA precursors immediately 5' of the residue at +1, i.e. at the position that corresponds to the first residue in tRNA. Most tRNAs carry a G(+1)C(+72) base pair at the end of the aminoacyl acceptor-stem whereas in tRNA(Gln) G(+1)C(+72) is replaced with U(+1)A(+72). Here, we investigated RNase P RNA-mediated cleavage as a function of having G(+1)C(+72) versus U(+1)A(+72) in various substrate backgrounds, two full-size tRNA precursors (pre-tRNA(Gln) and pre-tRNA(Tyr)Su3) and a model RNA hairpin substrate (pATSer). Our data showed that replacement of G(+1)C(+72) with U(+1)A(+72) influenced ground state binding, cleavage efficiency under multiple and single turnover conditions in a substrate-dependent manner. Interestingly, we observed differences both in ground state binding and rate of cleavage comparing two full-size tRNA precursors, pre-tRNA(Gln) and pre-tRNA(Tyr)Su3. These findings provide evidence for substrate discrimination in RNase P RNA-mediated cleavage both at the level of binding, as previously observed for EF-Tu, as well as at the catalytic step. In our experiments where we used model substrate derivatives further indicated the importance of the +1/+72 base pair in substrate discrimination by RNase P RNA. Finally, we provide evidence that the structural architecture influences Mg2+ binding, most likely in its vicinity.
机译:像翻译延伸因子EF-Tu一样,RNase P与大量底物相互作用,其中RNase P及其RNA亚基通过立即在+1位即位置5'处切割残基的tRNA前体产生具有成熟5'末端的tRNA。对应于tRNA中的第一个残基。大多数tRNA在氨基酰基受体茎的末端带有G(+1)C(+72)个碱基对,而在tRNA(Gln)中,G(+1)C(+72)被U(+1)A取代(+72)。在这里,我们研究了RNase P RNA介导的裂解与G(+1)C(+72)与U(+1)A(+72)在各种底物背景,两种全尺寸tRNA前体( tRNA(Gln)和pre-tRNA(Tyr)Su3)和模型RNA发夹底物(pATSer)。我们的数据表明,用U(+1)A(+72)取代G(+1)C(+72)影响基态结合,在多个和单个周转条件下以底物依赖性方式切割的效率。有趣的是,我们比较了两个完整的tRNA前体pre-tRNA(Gln)和pre-tRNA(Tyr)Su3,观察到了基态结合和切割速率的差异。这些发现为先前在EF-Tu中观察到的结合水平以及在催化步骤中在RNA酶P RNA介导的裂解中的底物区分提供了证据。在我们使用模型底物衍生物的实验中,进一步表明了+ 1 / + 72个碱基对在RNase P RNA底物识别中的重要性。最后,我们提供了证据,表明结构结构会影响Mg2 +的结合,很可能在其附近。

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