Non-coding RNA

生物 小核仁RNA 非编码RNA 长非编码RNA 核糖核酸 表观遗传学 RNA剪接 平铺阵列 小RNA 染色质 计算生物学 基因组 非编码DNA 基因表达调控 遗传学 基因 基因表达 内含子 转录组
作者
John S. Mattick,Igor V. Makunin
出处
期刊:Human Molecular Genetics [Oxford University Press]
卷期号:15 (suppl_1): R17-R29 被引量:2429
标识
DOI:10.1093/hmg/ddl046
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.
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