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Non-coding RNA

机译:非编码RNA

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摘要

The term non-coding RNA (ncRNA) is commonly employed for RNA that does not encode a protein, but this does not mean that such RNAs do not contain information nor have function. Although it has been generally assumed that most genetic information is transacted by proteins, recent evidence suggests that the majority of the genomes of mammals and other complex organisms is in fact transcribed into ncRNAs, many of which are alternatively spliced and/or processed into smaller products. These ncRNAs include microRNAs and snoRNAs (many if not most of which remain to be identified), as well as likely other classes of yet-to-be-discovered small regulatory RNAs, and tens of thousands of longer transcripts (including complex patterns of interlacing and overlapping sense and antisense transcripts), most of whose functions are unknown. These RNAs (including those derived from introns) appear to comprise a hidden layer of internal signals that control various levels of gene expression in physiology and development, including chromatin architecture/epigenetic memory, transcription, RNA splicing, editing, translation and turnover. RNA regulatory networks may determine most of our complex characteristics, play a significant role in disease and constitute an unexplored world of genetic variation both within and between species.
机译:术语非编码RNA(ncRNA)通常用于不编码蛋白质的RNA,但这并不意味着此类RNA不包含信息也不具有功能。尽管通常认为大多数遗传信息是通过蛋白质进行交易的,但最近的证据表明,哺乳动物和其他复杂生物的大多数基因组实际上都被转录为ncRNA,其中许多被剪接和/或加工成较小的产物。这些ncRNA包括microRNA和snoRNA(许多(即使不是大多数,仍有待确定)),以及可能尚未发现的其他类别的小调控RNA,以及成千上万的更长的转录本(包括复杂的隔行扫描模式)以及重叠的正义和反义转录本),其中大多数功能是未知的。这些RNA(包括衍生自内含子的RNA)似乎包含内部信号的隐藏层,该信号控制着生理和发育中各种水平的基因表达,包括染色质结构/表观遗传记忆,转录,RNA剪接,编辑,翻译和更新。 RNA调控网络可能决定了我们的大多数复杂特征,在疾病中起着重要作用,并且构成了物种内部和物种之间尚未探索的遗传变异世界。

著录项

  • 来源
    《Human Molecular Genetics》 |2006年第1期|R17-R29|共13页
  • 作者单位

    Australian Research Council Centre for Functional and Applied Genomics Institute for Molecular Bioscience University of Queensland St Lucia QLD 4072 Australia;

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