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Transcript diversification in the nervous system: A to I RNA-editing in CNS function and disease development

机译:神经系统中的转录物多样化:中枢神经系统功能和疾病发展的A至I RNA编辑

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RNA editing by adenosine deaminases that act on RNA converts adenosines to inosines in coding and non-coding regions of mRNAs. Inosines are interpreted as guanosines and hence, this type of editing can change codons, alter splice patterns, or influence the fate of an RNA. A to I editing is most abundant in the central nervous system. Here, targets for this type of nucleotide modification frequently encode receptors and channels. In many cases, the editing-induced amino acid exchanges alter the properties of the receptors and channels. Consistently, changes in editing patterns are frequently found associated with diseases of the central nervous system. In this review we describe the mechanisms of RNA editing and focus on target mRNAs of editing that are functionally relevant to normal and aberrant CNS activity.
机译:通过作用于RNA的腺苷脱氨基酶进行RNA编辑,可在mRNA的编码区和非编码区将腺苷转化为肌苷。肌苷被解释为鸟苷,因此,这种类型的编辑可以改变密码子,改变剪接模式或影响RNA的命运。我编辑的中枢神经系统最多。在此,用于这种类型的核苷酸修饰的靶标经常编码受体和通道。在许多情况下,编辑诱导的氨基酸交换会改变受体和通道的特性。一致地,经常发现编辑模式的改变与中枢神经系统疾病有关。在这篇综述中,我们描述了RNA编辑的机制,并着重于与正常和异常CNS活性在功能上相关的编辑目标mRNA。

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