A vlincRNA participates in senescence maintenance by relieving H2AZ-mediated repression at the INK4 locus

Non-coding RNAs (ncRNAs) play major roles in proper chromatin organization and function. Senescence, a strong anti-proliferative process and a major anticancer barrier, is associated with dramatic chromatin reorganization in heterochromatin foci. Here we analyze strand-specific transcriptome changes...

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Veröffentlicht in:Nature communications 2015-01, Vol.6 (1), p.5971-5971, Article 5971
Hauptverfasser: Lazorthes, Sandra, Vallot, Céline, Briois, Sébastien, Aguirrebengoa, Marion, Thuret, Jean-Yves, Laurent, Georges St, Rougeulle, Claire, Kapranov, Philipp, Mann, Carl, Trouche, Didier, Nicolas, Estelle
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Sprache:eng
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Zusammenfassung:Non-coding RNAs (ncRNAs) play major roles in proper chromatin organization and function. Senescence, a strong anti-proliferative process and a major anticancer barrier, is associated with dramatic chromatin reorganization in heterochromatin foci. Here we analyze strand-specific transcriptome changes during oncogene-induced human senescence. Strikingly, while differentially expressed RNAs are mostly repressed during senescence, ncRNAs belonging to the recently described vlincRNA (very long intergenic ncRNA) class are mainly activated. We show that VAD , a novel antisense vlincRNA strongly induced during senescence, is required for the maintenance of senescence features. VAD modulates chromatin structure in cis and activates gene expression in trans at the INK4 locus, which encodes cell cycle inhibitors important for senescence-associated cell proliferation arrest. Importantly, VAD inhibits the incorporation of the repressive histone variant H2A.Z at INK4 gene promoters in senescent cells. Our data underline the importance of vlincRNAs as sensors of cellular environment changes and as mediators of the correct transcriptional response. Senescence is associated with chromatin reorganization in heterochromatin foci. Here the authors show that VAD , a very long intergenic non-coding RNA activated by senescence, inhibits the incorporation of the repressive histone variant H2A.Z to INK4 promoters in senescent cells.
ISSN:2041-1723
2041-1723
DOI:10.1038/ncomms6971