Annotating non-coding transcription using functional genomics strategies.

Alistair R R Forrest, Rehab F Abdelhamid, Piero Carninci
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引用次数: 10

Abstract

Non-coding RNA (ncRNA) transcripts are RNA molecules that do not code for proteins, but elicit function by other mechanisms. The vast majority of RNA produced in a cell is non-coding ribosomal RNA, produced from relatively few loci, however more recently complementary DNA (cDNA) cloning, tag sequencing, and genome tiling array studies suggest that ncRNAs also account for the majority of RNA species produced by a cell. ncRNA based regulation has been referred to as a 'hidden layer' of signals or 'dark matter' that control gene expression in cellular processes by poorly described mechanisms. These terms have appeared as ncRNAs until recently have been ignored by expression profiling and cDNA annotation projects and their mode of action is diverse (e.g. influencing chromatin structure and epigenetics, translational silencing, transcriptional silencing). Here, we highlight recent functional genomics strategies toward identifying and assigning function to ncRNA transcription.

使用功能基因组学策略注释非编码转录。
非编码RNA (ncRNA)转录本是不编码蛋白质,但通过其他机制引发功能的RNA分子。细胞中产生的绝大多数RNA是非编码核糖体RNA,由相对较少的位点产生,然而,最近的互补DNA (cDNA)克隆、标签测序和基因组平铺阵列研究表明,ncRNAs也占细胞产生的RNA种类的大多数。基于ncRNA的调控被称为信号的“隐藏层”或“暗物质”,通过尚未描述的机制控制细胞过程中的基因表达。这些术语一直作为ncrna出现,直到最近才被表达谱和cDNA注释项目所忽视,它们的作用模式多种多样(例如影响染色质结构和表观遗传学,翻译沉默,转录沉默)。在这里,我们重点介绍了最近用于鉴定和分配ncRNA转录功能的功能基因组学策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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