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The influence of non-coding RNAs on allele-specific gene expression in mammals

机译:非编码RNA对哺乳动物等位基因特异性基因表达的影响

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Current research has revealed that the influence of RNA molecules on gene expression reaches beyond the realm of protein synthesis back into the nucleus, where it not only dictates the transcriptional activity of genes, but also shapes the chromatin architecture of extensive regions of DNA. Non-coding RNA, in the context of this review, refers to transcripts expressed and processed in the nucleus much like any protein coding gene, but lacking an open reading frame and often transcribed antisense to bona fide protein coding genes. In mammals, these types of transcripts are highly coincident with allele-specific silencing of imprinted genes and have a proven role in dosage compensation via X-inactivation. The biochemistry of how non-coding RNAs regulate transcription is the subject of intense research in both prokaryotic and eukaryotic models. Mechanisms such as RNA interference may have deep phylogenetic roots, but their relevance to imprinting and X-inactivation in mammals has not been proven. The remarkable diversity of non-coding transcription associated with parent-of-origin directed gene silencing hints at an equally diverse assortment of mechanisms.
机译:当前的研究表明,RNA分子对基因表达的影响已经超出了蛋白质合成的范围,回到了细胞核,在细胞核中它不仅决定了基因的转录活性,而且还影响了DNA广泛区域的染色质结构。在本综述中,非编码RNA是指在核中表达和加工的转录本,与任何蛋白质编码基因非常相似,但是缺乏开放阅读框,并且经常将反义转录为真正的蛋白质编码基因。在哺乳动物中,这些类型的转录本与印迹基因的等位基因特异性沉默高度吻合,并且在通过X灭活进行剂量补偿中具有公认的作用。非编码RNA如何调节转录的生物化学是原核和真核模型中广泛研究的主题。 RNA干扰等机制可能具有深厚的系统发育根源,但尚未证明它们与哺乳动物的印迹和X失活有关。与起源父母指导的基因沉默相关的非编码转录的显着多样性暗示着机制的同样多样化。

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