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Transcriptome-wide Interrogation of the Functional Intronome by Spliceosome Profiling

机译:通过缩写素质分析通过转录的函数内核询问

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摘要

Full understanding of eukaryotic transcriptomes and how they respond to different conditions requires deep knowledge of all sites of intron excision. Although RNA sequencing (RNA-seq) provides much of this information, the low abundance of many spliced transcripts (often due to their rapid cytoplasmic decay) limits the ability of RNA-seq alone to reveal the full repertoire of spliced species. Here, we present "spliceosome profiling," a strategy based on deep sequencing of RNAs co-purifying with late-stage spliceosomes. Spliceosome profiling allows for unambiguous mapping of intron ends to single-nucleotide resolution and branchpoint identification at unprecedented depths. Our data reveal hundreds of new introns in S. pombe and numerous others that were previously misannotated. By providing a means to directly interrogate sites of spliceosome assembly and catalysis genome-wide, spliceosome profiling promises to transform our understanding of RNA processing in the nucleus, much as ribosome profiling has transformed our understanding mRNA translation in the cytoplasm.
机译:全面了解真核转录om以及它们如何应对不同的条件,需要深入了解所有内含子切除遗址。尽管RNA测序(RNA-SEQ)提供了大部分信息,但许多拼接转录物的低丰度(通常是由于它们的快速细胞质衰减)限制了RNA-SEQ的能力,以揭示拼接物种的完整曲目。在这里,我们提出了“抗磷酸体分析”,一种基于LNA的深度测序的策略,该策略与后期抗乳头乳头纯化的RNA。抗缩镜体谱允许在前所未有的深度下进行内含子末端的明确映射到单核苷酸分辨率和分支识别。我们的数据显示了数百名在S.Pombe和众多内部缺失的其他人的新内含子。通过提供直接询问剪切组件和催化基因分析的方法 - 宽的,抗磷酸体分析有望改变我们对核中RNA处理的理解,就像核糖体分析一样转化了我们在细胞质中的理解mRNA翻译。

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  • 来源
    《Cell》 |2018年第4期|共27页
  • 作者单位

    Univ Massachusetts Med Sch RNA Therapeut Inst Worcester MA 01655 USA;

    Univ Massachusetts Med Sch Bioinformat &

    Integrat Biol Worcester MA 01655 USA;

    Univ Massachusetts Med Sch Program Syst Biol Worcester MA 01655 USA;

    Univ Massachusetts Med Sch Bioinformat &

    Integrat Biol Worcester MA 01655 USA;

    Univ Massachusetts Med Sch Dept Biochem &

    Mol Pharmacol Worcester MA 01655 USA;

    Univ Massachusetts Med Sch Bioinformat &

    Integrat Biol Worcester MA 01655 USA;

    Univ Massachusetts Med Sch RNA Therapeut Inst Worcester MA 01655 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

  • 入库时间 2022-08-19 23:27:51

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