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Long non-coding RNA: its evolutionary relics and biological implications in mammals: a review

机译:长非编码RNA:在哺乳动物中的进化遗迹和生物学意义:综述

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The central dogma of gene expression propounds that DNA is transcribed to mRNA and finally gets translated into protein. Only 2–3% of the genomic DNA is transcribed to protein-coding mRNA. Interestingly, only a further minuscule part of genomic DNA encodes for long non-coding RNAs (lncRNAs) which are characteristically more than 200 nucleotides long and can be transcribed from both protein-coding (e.g. H19 and TUG1) as well as non-coding DNA by RNA polymerase II. The lncRNAs do not have open reading frames (with some exceptions), 3`-untranslated regions (3’-UTRs) and necessarily these RNAs lack any translation-termination regions, however, these can be spliced, capped and polyadenylated as mRNA molecules. The flexibility of lncRNAs confers them specific 3D-conformations that eventually enable the lncRNAs to interact with proteins, DNA or other RNA molecules via base pairing or by forming networks. The lncRNAs play a major role in gene regulation, cell differentiation, cancer cell invasion and metastasis and chromatin remodeling. Deregulation of lncRNA is also responsible for numerous diseases in mammals. Various studies have revealed their significance as biomarkers for prognosis and diagnosis of cancer. The aim of this review is to overview the salient features, evolution, biogenesis and biological importance of these molecules in the mammalian system.
机译:基因表达的中心教条提出DNA被转录成mRNA,最后被翻译成蛋白质。只有2-3%的基因组DNA被转录为蛋白质编码的mRNA。有趣的是,基因组DNA的另一小部分编码长的非编码RNA(lncRNA),其特征是长度超过200个核苷酸,可以从蛋白质编码(例如H19和TUG1)以及非编码DNA转录通过RNA聚合酶II。 lncRNA没有开放阅读框(有一些例外),3'非翻译区(3'-UTR),并且这些RNA必然缺少任何翻译终止区,但是,它们可以作为mRNA分子进行剪接,加帽和聚腺苷酸化。 lncRNA的灵活性赋予它们特定的3D构象,最终使lncRNA通过碱基配对或形成网络与蛋白质,DNA或其他RNA分子相互作用。 lncRNA在基因调节,细胞分化,癌细胞侵袭和转移以及染色质重塑中起主要作用。 lncRNA的失调也与哺乳动物的多种疾病有关。各种研究表明它们作为癌症预后和诊断的生物标志物的重要性。本文的目的是概述这些分子在哺乳动物系统中的显着特征,进化,生物发生和生物学重要性。

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