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Profiling of Ribose Methylations in RNA by High-Throughput Sequencing

机译:高通量测序技术分析RNA中的核糖甲基化

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摘要

Ribose methylations are the most abundant chemical modifications of ribosomal RNA and are critical for ribosome assembly and fidelity of translation. Many aspects of ribose methylations have been difficult to study due to lack of efficient mapping methods. Here, we present a sequencing-based method (RiboMeth-seq) and its application to yeast ribosomes, presently the best-studied eukaryotic model system. We demonstrate detection of the known as well as new modifications, reveal partial modifications and unexpected communication between modification events, and determine the order of modification at several sites during ribosome biogenesis. Surprisingly, the method also provides information on a subset of other modifications. Hence, RiboMeth-seq enables a detailed evaluation of the importance of RNA modifications in the cells most sophisticated molecular machine. RiboMeth-seq can be adapted to other RNA classes, for example, mRNA, to reveal new biology involving RNA modifications.
机译:核糖甲基化是核糖体RNA最丰富的化学修饰,对于核糖体组装和翻译保真度至关重要。由于缺乏有效的作图方法,核糖甲基化的许多方面都难以研究。在这里,我们提出一种基于测序的方法(RiboMeth-seq)及其在酵母核糖体中的应用,目前是研究最好的真核生物模型系统。我们展示了已知以及新的修饰的检测,揭示了修饰事件之间的部分修饰和意外通讯,并确定了核糖体生物发生过程中几个位点的修饰顺序。令人惊讶地,该方法还提供了关于其他修改的子集的信息。因此,RiboMeth-seq能够详细评估细胞中最复杂的分子机器中RNA修饰的重要性。 RiboMeth-seq可以适应其他RNA类型,例如mRNA,以揭示涉及RNA修饰的新生物学。

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