The Wistar Institute, 3601 Spruce Street, Philadelphia, PA 19104, United States.
Curr Opin Genet Dev. 2011 Apr;21(2):194-8. doi: 10.1016/j.gde.2011.01.020. Epub 2011 Feb 15.
Long non-coding RNAs (ncRNAs) are emerging as important regulatory factors in mammalian genomics. A number of reports within the last 2 years have identified thousands of actively expressed long ncRNA transcripts with distinct properties. The long ncRNAs show differential expression patterns and regulation in a wide variety of cells and tissues, adding significant complexity to the understanding of their biological role. Furthermore, genome-wide studies of transcriptional enhancers based on chromatin modifications and enhancer binding proteins have led to the identification of putative enhancers and provided insight into their tissue-specific regulation of gene expression. In an exciting turn of events, new evidence is indicating that long ncRNAs are associated with enhancer regions and that such non-coding transcription correlate with the increased activity of the neighboring genes. Moreover, additional experiments suggest that enhancer-function can be mediated through a transcribed long ncRNA and that this might be a common function for long ncRNAs. Here, we review recent advances made both in the genome-wide characterization of enhancers and in the identification of new classes of long ncRNAs, and discuss the functional overlap of these two classes of regulatory elements.
长非编码 RNA(lncRNAs)正在成为哺乳动物基因组学中重要的调控因子。在过去的两年中,有许多报道已经鉴定出数千种具有独特特性的活跃表达的长 lncRNA 转录本。lncRNAs 在广泛的细胞和组织中表现出不同的表达模式和调控,这为理解它们的生物学功能增加了显著的复杂性。此外,基于染色质修饰和增强子结合蛋白的转录增强子的全基因组研究导致了推定增强子的鉴定,并提供了对其组织特异性基因表达调控的深入了解。在一个令人兴奋的转折中,新的证据表明 lncRNAs 与增强子区域相关,并且这种非编码转录与邻近基因活性的增加相关。此外,额外的实验表明,增强子功能可以通过转录的长 lncRNA 介导,并且这可能是长 lncRNAs 的一个共同功能。在这里,我们回顾了在增强子的全基因组特征描述和新的长 lncRNA 类别的鉴定方面取得的最新进展,并讨论了这两类调控元件的功能重叠。