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A Large Fraction of Extragenic RNA Pol II Transcription Sites Overlap Enhancers

PLoS Biology · 2010 · Vol. 8(5) · pp. e1000384–e1000384
Francesca De SantaIros BarozziFlore MiettonSerena GhislettiSara PollettiBetsabeh Khoramian TusiHeiko MüllerJiannis RagoussisChia‐Lin WeiGioacchino Natoli

Abstract

Mammalian genomes are pervasively transcribed outside mapped protein-coding genes. One class of extragenic transcription products is represented by long non-coding RNAs (lncRNAs), some of which result from Pol_II transcription of bona-fide RNA genes. Whether all lncRNAs described insofar are products of RNA genes, however, is still unclear. Here we have characterized transcription sites located outside protein-coding genes in a highly regulated response, macrophage activation by endotoxin. Using chromatin signatures, we could unambiguously classify extragenic Pol_II binding sites as belonging to either canonical RNA genes or transcribed enhancers. Unexpectedly, 70% of extragenic Pol_II peaks were associated with genomic regions with a canonical chromatin signature of enhancers. Enhancer-associated extragenic transcription was frequently adjacent to inducible inflammatory genes, was regulated in response to endotoxin stimulation, and generated very low abundance transcripts. Moreover, transcribed enhancers were under purifying selection and contained binding sites for inflammatory transcription factors, thus suggesting their functionality. These data demonstrate that a large fraction of extragenic Pol_II transcription sites can be ascribed to cis-regulatory genomic regions. Discrimination between lncRNAs generated by canonical RNA genes and products of transcribed enhancers will provide a framework for experimental approaches to lncRNAs and help complete the annotation of mammalian genomes.

Cancer-related molecular mechanisms researchRNA Research and SplicingRNA and protein synthesis mechanismsEnhancerBiologyGeneticsTranscription (linguistics)GeneEnhancer RNAsChromatinRNAGenomeRNA polymerase II

MeSH terms

AnimalsBinding SitesFemaleGene Expression RegulationHumansLipopolysaccharidesMacrophage ActivationPromoter Regions, GeneticRegulatory Sequences, Nucleic AcidRNA Polymerase IITranscription, GeneticRNA, UntranslatedMice

Funding

  • Wellcome Trust
  • Ministry of Education, Culture, Sports, Science and Technology
  • Associazione Italiana per la Ricerca sul Cancro
Citations
936
FWCI
20.06
field-weighted impact
References
80
Percentile
100%
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Citations per year
References
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Cell · 2009 · 5,110 citations
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Cell · 2008 · 4,683 citations
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