LINE retrotransposons characterize mammalian tissue-specific and evolutionarily dynamic regulatory regions

Background To investigate the mechanisms driving regulatory evolution across tissues, we experimentally mapped promoters, enhancers, and gene expression in the liver, brain, muscle, and testis from ten diverse mammals. Results The regulatory landscape around genes included both tissue-shared and tis...

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Veröffentlicht in:Genome Biology 2021-02, Vol.22 (1), p.62-62, Article 62
Hauptverfasser: Roller, Masa, Stamper, Ericca, Villar, Diego, Izuogu, Osagie, Martin, Fergal, Redmond, Aisling M., Ramachanderan, Raghavendra, Harewood, Louise, Odom, Duncan T., Flicek, Paul
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Sprache:eng
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Zusammenfassung:Background To investigate the mechanisms driving regulatory evolution across tissues, we experimentally mapped promoters, enhancers, and gene expression in the liver, brain, muscle, and testis from ten diverse mammals. Results The regulatory landscape around genes included both tissue-shared and tissue-specific regulatory regions, where tissue-specific promoters and enhancers evolved most rapidly. Genomic regions switching between promoters and enhancers were more common across species, and less common across tissues within a single species. Long Interspersed Nuclear Elements (LINEs) played recurrent evolutionary roles: LINE L1s were associated with tissue-specific regulatory regions, whereas more ancient LINE L2s were associated with tissue-shared regulatory regions and with those switching between promoter and enhancer signatures across species. Conclusions Our analyses of the tissue-specificity and evolutionary stability among promoters and enhancers reveal how specific LINE families have helped shape the dynamic mammalian regulome.
ISSN:1474-760X
1474-7596
1474-760X
DOI:10.1186/s13059-021-02260-y