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Orchestrated positioning of post-transcriptional modifications at the branch point recognition region of U2 snRNA

机译:在U2 SnRNA的分支点识别区域进行策划定位后转录修改

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The branch point recognition region of spliceosomal snRNA U2 is heavily modified post-transcriptionally in most eukaryotic species. We focused on this region to learn how nearby positions may interfere with each other when targeted for modification. Using an in vivo yeast Saccharomyces cerevisiae cell system, we tested the modification activity of several guide RNAs from human, mouse, the frog Xenopus tropicalis, the fruit fly Drosophila melanogaster, and the worm Caenorhabditis elegans. We experimentally verified predictions for vertebrate U2 modification guide RNAs SCARNA4 and SCARNA15, and identified a C. elegans ortholog of SCARNA15. We observed crosstalk between sites in the heavily modified regions, such that modification at one site may inhibit modification at nearby sites. This is true for the branch point recognition region of U2 snRNA, the 5' loop of U5 snRNA, and certain regions of rRNAs, when tested either in yeast or in HeLa cells. The position preceding a uridine targeted for isomerization by a box H/ACA guide RNA is the most sensitive for noncanonical base-pairing and modification (either pseudouridylation or 2'-O-methylation). Based on these findings, we propose that modification must occur stepwise starting with the most vulnerable positions and ending with the most inhibiting modifications. We discuss possible strategies that cells use to reach complete modification in heavily modified regions.
机译:在大多数真核物种中,抗乳糖体SnRNA U2的分支点识别区域的转录后经过重新分析。我们专注于该地区,了解在针对修改时,附近的位置可能会互相干扰。使用体内酵母酿酒酵母细胞体系,我们测试了来自人,小鼠,青蛙外鼠热马车,果蝇果蝇的微小的几个指南RNA的修饰活性,以及​​蠕虫Caenorhabditis的秀丽隐塞。我们通过实验验证脊椎动物U2修饰指南RNAS Scarna4和Scarna15的预测,并确定了Scarna15的C. elegans orthologog。我们观察了大量修改区域的位点之间的串扰,使得一个站点的修改可能会抑制附近网站的修改。这对于U2 SnRNA的分支点识别区域,U5 SnRNA的5'环的分支点识别区域和RRNA的某些区域,当在酵母或HeLa细胞中测试时。通过盒H / ACA引导RNA靶向异构化的尿苷的位置是无共甘露酰基配对和改性最敏感的(假亚胺化或2'-O-甲基化)。基于这些调查结果,我们提出了修改必须从最脆弱的位置开始,并以最抑制的修改结束。我们讨论了细胞用于在重型地区完全修改的可能策略。

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