Department of Computational Biology, University of Lausanne, Lausanne, Switzerland
Department of Computational Biology, University of Lausanne, Lausanne, Switzerland.
Life Sci Alliance. 2020 Feb 21;3(4). doi: 10.26508/lsa.202000663. Print 2020 Apr.
Transcription is common at active mammalian enhancers sometimes giving rise to stable enhancer-associated long intergenic noncoding RNAs (elincRNAs). Expression of elincRNA is associated with changes in neighboring gene product abundance and local chromosomal topology, suggesting that transcription at these loci contributes to gene expression regulation in Despite the lack of evidence supporting sequence-dependent functions for most elincRNAs, splicing of these transcripts is unexpectedly common. Whether elincRNA splicing is a mere consequence of cognate enhancer activity or if it directly impacts enhancer function remains unresolved. Here, we investigate the association between elincRNA splicing and enhancer activity in mouse embryonic stem cells. We show that multi-exonic elincRNAs are enriched at conserved enhancers, and the efficient processing of elincRNAs is strongly associated with their cognate enhancer activity. This association is supported by their enrichment in enhancer-specific chromatin signatures; elevated binding of co-transcriptional regulators; increased local intra-chromosomal DNA contacts; and strengthened -regulation on target gene expression. Our results support the role of efficient RNA processing of enhancer-associated transcripts to cognate enhancer activity.
转录在活跃的哺乳动物增强子中很常见,有时会产生稳定的增强子相关的长基因间非编码 RNA(elincRNA)。elincRNA 的表达与邻近基因产物丰度和局部染色质拓扑结构的变化有关,这表明这些基因座的转录有助于基因表达调控。尽管缺乏支持大多数 elincRNA 序列依赖性功能的证据,但这些转录本的剪接却出人意料地常见。elincRNA 剪接是增强子活性的必然结果,还是直接影响增强子功能,目前仍未解决。在这里,我们研究了小鼠胚胎干细胞中 elincRNA 剪接与增强子活性之间的关系。我们表明,多外显子的 elincRNA 在保守的增强子中富集,elincRNA 的有效加工与其同源增强子活性强烈相关。这种关联得到了以下证据的支持:它们在增强子特异性染色质特征中的富集;转录共调节因子的结合增加;局部染色体内 DNA 接触增加;以及对靶基因表达的调控增强。我们的结果支持了增强子相关转录物有效 RNA 加工与其同源增强子活性的作用。