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Archaea box C/D enzymes methylate two distinct substrate rRNA sequences with different efficiency

机译:古细菌盒C / D酶甲基化两个具有不同效率的不同底物rRNA序列

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RNA modifications confer complexity to the 4-nucleotide polymer; nevertheless, their exact function is mostly unknown. rRNA 2'-O-ribose methylation concentrates to ribosome functional sites and is important for ribosome biogenesis. The methyl group is transferred to rRNA by the box C/D RNPs: The rRNA sequence to be methylated is recognized by a complementary sequence on the guide RNA, which is part of the enzyme. In contrast to their eukaryotic homologs, archaeal box C/D enzymes can be assembled in vitro and are used to study the mechanism of 2'-O-ribose methylation. In Archaea, each guide RNA directs methylation to two distinct rRNA sequences, posing the question whether this dual architecture of the enzyme has a regulatory role. Here we use methylation assays and low-resolution structural analysis with small-angle X-ray scattering to study the methylation reaction guided by the sR26 guide RNA from Pyrococcus furiosus. We find that the methylation efficacy at sites D and D' differ substantially, with substrate D' turning over more efficiently than substrate D. This observation correlates well with structural data: The scattering profile of the box C/D RNP half-loaded with substrate D' is similar to that of the holo complex, which has the highest activity. Unexpectedly, the guide RNA secondary structure is not responsible for the functional difference at the D and D' sites. Instead, this difference is recapitulated by the nature of the first base pair of the guide-substrate duplex. We suggest that substrate turnover may occur through a zip mechanism that initiates at the 5'-end of the product.
机译:RNA修饰使4-核苷酸聚合物具有复杂性;但是,它们的确切功能大多未知。 rRNA 2'-O-核糖甲基化浓缩至核糖体功能位点,对于核糖体的生物发生很重要。甲基通过框C / D RNP转移到rRNA:要甲基化的rRNA序列被向导RNA上的互补序列识别,该序列是酶的一部分。与它们的真核同源物相比,古细菌盒C / D酶可以在体外组装,并用于研究2'-O-核糖甲基化的机理。在古细菌中,每个引导RNA都将甲基化引导至两个不同的rRNA序列,这提出了该酶的双重结构是否具有调节作用的问题。在这里,我们使用甲基化分析和小角度X射线散射的低分辨率结构分析来研究激烈热球菌(Pyrococcus furiosus)的sR26引导RNA指导的甲基化反应。我们发现在位点D和D'处的甲基化功效存在显着差异,底物D'的翻转效率比底物D高。该观察结果与结构数据很好地相关:盒装C / D RNP半载底物的散射曲线D'类似于具有最高活性的全络合物。出乎意料的是,指导RNA二级结构不负责D和D'位点的功能差异。相反,这种差异可以通过引导底物双链体的第一个碱基对的性质来概括。我们建议底物周转率可能是通过在产品5'端起始的拉链机制发生的。

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