Non-coding RNAs: Classification, Biology and Functioning

小核仁RNA 生物 遗传学 长非编码RNA 计算生物学 核糖核酸 非编码RNA 小RNA 表观遗传学 RNA剪接 基因
作者
Sonja Hombach,Markus Kretz
出处
期刊:Advances in Experimental Medicine and Biology [Springer Nature]
卷期号:937: 3-17 被引量:902
标识
DOI:10.1007/978-3-319-42059-2_1
摘要

One of the long-standing principles of molecular biology is that DNA acts as a template for transcription of messenger RNAs, which serve as blueprints for protein translation. A rapidly growing number of exceptions to this rule have been reported over the past decades: they include long known classes of RNAs involved in translation such as transfer RNAs and ribosomal RNAs, small nuclear RNAs involved in splicing events, and small nucleolar RNAs mainly involved in the modification of other small RNAs, such as ribosomal RNAs and transfer RNAs. More recently, several classes of short regulatory non-coding RNAs, including piwi-associated RNAs, endogenous short-interfering RNAs and microRNAs have been discovered in mammals, which act as key regulators of gene expression in many different cellular pathways and systems. Additionally, the human genome encodes several thousand long non-protein coding RNAs >200 nucleotides in length, some of which play crucial roles in a variety of biological processes such as epigenetic control of chromatin, promoter-specific gene regulation, mRNA stability, X-chromosome inactivation and imprinting. In this chapter, we will introduce several classes of short and long non-coding RNAs, describe their diverse roles in mammalian gene regulation and give examples for known modes of action.
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