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Deep annotation of Drosophila melanogaster microRNAs yields insights into their processing modification and emergence

机译:果蝇黑色RNA的深层注释可深入了解其加工修饰和出现

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摘要

Since the initial annotation of miRNAs from cloned short RNAs by the Ambros, Tuschl, and Bartel groups in 2001, more than a hundred studies have sought to identify additional miRNAs in various species. We report here a meta-analysis of short RNA data from Drosophila melanogaster, aggregating published libraries with 76 data sets that we generated for the modENCODE project. In total, we began with more than 1 billion raw reads from 187 libraries comprising diverse developmental stages, specific tissue- and cell-types, mutant conditions, and/or Argonaute immunoprecipitations. We elucidated several features of known miRNA loci, including multiple phased byproducts of cropping and dicing, abundant alternative 5′ termini of certain miRNAs, frequent 3′ untemplated additions, and potential editing events. We also identified 49 novel genomic locations of miRNA production, and 61 additional candidate loci with limited evidence for miRNA biogenesis. Although these loci broaden the Drosophila miRNA catalog, this work supports the notion that a restricted set of cellular transcripts is competent to be specifically processed by the Drosha/Dicer-1 pathway. Unexpectedly, we detected miRNA production from coding and untranslated regions of mRNAs and found the phenomenon of miRNA production from the antisense strand of known loci to be common. Altogether, this study lays a comprehensive foundation for the study of miRNA diversity and evolution in a complex animal model.
机译:自从2001年Ambros,Tuschl和Bartel研究小组从克隆的短RNA中首次注释miRNA以来,已有一百多项研究试图鉴定各种物种中的其他miRNA。我们在这里报告了来自果蝇的短RNA数据的荟萃分析,将已发布的库与我们为modENCODE项目生成的76个数据集进行了汇总。总共,我们从187个库中进行了超过10亿个原始读取,包括不同的发育阶段,特定的组织和细胞类型,突变条件和/或Argonaute免疫沉淀。我们阐明了已知的miRNA基因座的几个特征,包括多阶段的切割和切割副产物,某些miRNA的丰富5'末端替代,频繁的3'非模板化添加以及潜在的编辑事件。我们还确定了miRNA产生的49个新的基因组位置,以及miRNA生物发生的有限证据的61个其他候选基因座。尽管这些基因座拓宽了果蝇miRNA的目录范围,但这项工作支持以下观点:受限制的一组细胞转录本可以通过Drosha / Dicer-1途径进行特异性加工。出乎意料的是,我们从mRNA的编码区和非翻译区检测到miRNA的产生,并发现从已知基因座反义链产生miRNA的现象很普遍。总之,该研究为复杂动物模型中miRNA多样性和进化的研究奠定了全面的基础。

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