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Vespucci: a system for building annotated databases of nascent transcripts

机译:Vespucci:用于构建新生成绩单的注释数据库系统

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摘要

Global run-on sequencing (GRO-seq) is a recent addition to the series of high-throughput sequencing methods that enables new insights into transcriptional dynamics within a cell. However, GRO-sequencing presents new algorithmic challenges, as existing analysis platforms for ChIP-seq and RNA-seq do not address the unique problem of identifying transcriptional units de novo from short reads located all across the genome. Here, we present a novel algorithm for de novo transcript identification from GRO-sequencing data, along with a system that determines transcript regions, stores them in a relational database and associates them with known reference annotations. We use this method to analyze GRO-sequencing data from primary mouse macrophages and derive novel quantitative insights into the extent and characteristics of non-coding transcription in mammalian cells. In doing so, we demonstrate that Vespucci expands existing annotations for mRNAs and lincRNAs by defining the primary transcript beyond the polyadenylation site. In addition, Vespucci generates assemblies for un-annotated non-coding RNAs such as those transcribed from enhancer-like elements. Vespucci thereby provides a robust system for defining, storing and analyzing diverse classes of primary RNA transcripts that are of increasing biological interest.
机译:全局运行顺序(Gro-SEQ)是该系列的高吞吐量排序方法的最新外,这使得新的洞察能够进入小区内的转录动态。然而,由于芯片-SEQ和RNA-SEQ的现有分析平台,Gro-Sequencing呈现出新的算法挑战,因此不解决从整个基因组的短读数识别转录单位De Novo的独特问题。这里,我们介绍了一种新的eNVO转录识别识别从Gro-Sreaming数据的识别,以及确定转录区域的系统,将它们存储在关系数据库中,并将它们与已知的参考注释相关联。我们使用该方法从原发性小鼠巨噬细胞分析Gro测序数据,并导出哺乳动物细胞中非编码转录的程度和特征的新的定量见解。在这样做时,我们证明Vespucci通过将MRNA和LincRNA的vespucci定义在多腺苷酸盐位点之外来扩大MRNA和Lincrnas的现有注释。此外,Vespucci产生用于未注释的非编码RNA的组件,例如从增强子样元件转录的那些。因此,Vespucci提供了一种稳健的系统,用于定义,存储和分析各种初级RNA转录物,其具有增加的生物学兴趣。

著录项

  • 来源
    《Nucleic Acids Research》 |2014年第4期|共15页
  • 作者单位

    Department of Cellular and Molecular Medicine University of California San Diego 9500 Gilman Drive La Jolla CA 92093-0651 USA;

    A.I. Virtanen Institute Department of Biotechnology and Molecular Medicine University of Eastern Finland P.O. Box 1627 70120 Kuopio Finland;

    Institute for Genomic Medicine and Scripps Institution of Oceanography University of California San Diego 9500 Gilman Drive La Jolla CA 92093-0651 USA;

    Department of Medicine University of California San Diego 9500 Gilman Drive La Jolla CA 92093-0651 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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