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Título Increased enhancer-promoter interactions during developmental enhancer activation in mammals
Autores Chen, Zhuoxin , Snetkova, Valentina , Bower, Grace , Jacinto, Sandra , Clock, Benjamin , Dizehchi, Atrin , Barozzi, Iros , Mannion, Brandon J. , Alcaina-Caro, Ana , LÓPEZ-RÍOS MORENO, JAVIER, Dickel, Diane E. , Visel, Axel , Pennacchio, Len A. , Kvon, Evgeny Z.
Publicación externa No
Medio Nat Genet
Alcance Article
Naturaleza Científica
Cuartil JCR 1
Cuartil SJR 1
Web https://www.scopus.com/inward/record.uri?eid=2-s2.0-85187430541&doi=10.1038%2fs41588-024-01681-2&partnerID=40&md5=4c7688ed0a0c5b3560fa41a9f9e86d76
Fecha de publicacion 01/04/2024
ISI 001190092800002
Scopus Id 2-s2.0-85187430541
DOI 10.1038/s41588-024-01681-2
Abstract Remote enhancers are thought to interact with their target promoters via physical proximity, yet the importance of this proximity for enhancer function remains unclear. Here we investigate the three-dimensional (3D) conformation of enhancers during mammalian development by generating high-resolution tissue-resolved contact maps for nearly a thousand enhancers with characterized in vivo activities in ten murine embryonic tissues. Sixty-one percent of developmental enhancers bypass their neighboring genes, which are often marked by promoter CpG methylation. The majority of enhancers display tissue-specific 3D conformations, and both enhancer-promoter and enhancer-enhancer interactions are moderately but consistently increased upon enhancer activation in vivo. Less than 14% of enhancer-promoter interactions form stably across tissues; however, these invariant interactions form in the absence of the enhancer and are likely mediated by adjacent CTCF binding. Our results highlight the general importance of enhancer-promoter physical proximity for developmental gene activation in mammals.\n A catalog of enhancer-promoter (E-P) interactions across ten mouse embryonic tissues, supported by in vivo functional experiments, shows that E-P proximity increases upon enhancer activation during development.
Palabras clave Animals; Chromatin; Enhancer Elements, Genetic; Mammals; Mice; Promoter Regions, Genetic; Transcriptional Activation; animal cell; animal experiment; animal tissue; article; controlled study; developmental gene; embryo; embryo tissue; enhancer region; fetus; gene activation; mammal; mouse; mouse embryo; nonhuman; promoter region; transactivation assay; animal; chromatin; genetics; promoter region; transcription initiation
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