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A deeply conserved, noncanonical miRNA hosted by ribosomal DNA

机译:核糖体DNA托管的一种高度保守的非规范miRNA

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Advances in small RNA sequencing technologies and comparative genomics have fueled comprehensive microRNA (miRNA) gene annotations in humans and model organisms. Although new miRNAs continue to be discovered in recent years, these have universally been lowly expressed, recently evolved, and of debatable endogenous activity, leading to the general assumption that virtually all biologically important miRNAs have been identified. Here, we analyzed small RNAs that emanate from the highly repetitive rDNA arrays of Drosophila. In addition to endo-siRNAs derived from sense and antisense strands of the pre-rRNA sequence, we unexpectedly identified a novel, deeply conserved, noncanonical miRNA. Although this miRNA is widely expressed, this miRNA was not identified by previous studies due to bioinformatics filters removing such repetitive sequences. Deep-sequencing data provide clear evidence for specific processing with precisely defined 5 ' and 3 ' ends. Furthermore, we demonstrate that the mature miRNA species is incorporated in the effector complexes and has detectable trans regulatory activity. Processing of this miRNA requires Dicer-1, whereas the Drosha-Pasha complex is dispensable. The miRNA hairpin sequence is located in the internal transcribed spacer 1 region of rDNA and is highly conserved among Dipteran species that were separated from their common ancestor similar to 100 million years ago. Our results suggest that biologically active miRNA genes may remain unidentified even in well-studied organisms.
机译:小RNA测序技术和比较基因组学的进步推动了人类和模型生物中全面的microRNA(miRNA)基因注释。尽管近年来继续发现新的miRNA,但这些miRNA普遍表达不高,最近进化且具有可争议的内源活性,导致人们普遍认为几乎所有生物学上重要的miRNA均已被鉴定。在这里,我们分析了果蝇高度重复的rDNA阵列产生的小RNA。除了源于pre-rRNA序列的有义和反义链的内切siRNA,我们出乎意料地鉴定出一种新颖的,高度保守的,非经典的miRNA。尽管该miRNA被广泛表达,但由于生物信息学过滤器去除了此类重复序列,因此先前的研究未鉴定出该miRNA。深度测序数据为具有精确定义的5'和3'末端的特定处理提供了清晰的证据。此外,我们证明了成熟的miRNA种类被整合到效应子复合物中,并具有可检测的反式调节活性。此miRNA的加工需要Dicer-1,而Drosha-Pasha复合物是可有可无的。 miRNA发夹序列位于rDNA的内部转录间隔区1区域,在距其共同祖先约1亿年前的Dipteran物种中高度保守。我们的研究结果表明,即使在经过充分研究的生物中,具有生物学活性的miRNA基因也可能未被鉴定。

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