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Mol Cell ; 67(4): 566-578.e10, 2017 Aug 17.
Article de Anglais | MEDLINE | ID: mdl-28803781

RÉSUMÉ

50 years ago, Vincent Allfrey and colleagues discovered that lymphocyte activation triggers massive acetylation of chromatin. However, the molecular mechanisms driving epigenetic accessibility are still unknown. We here show that stimulated lymphocytes decondense chromatin by three differentially regulated steps. First, chromatin is repositioned away from the nuclear periphery in response to global acetylation. Second, histone nanodomain clusters decompact into mononucleosome fibers through a mechanism that requires Myc and continual energy input. Single-molecule imaging shows that this step lowers transcription factor residence time and non-specific collisions during sampling for DNA targets. Third, chromatin interactions shift from long range to predominantly short range, and CTCF-mediated loops and contact domains double in numbers. This architectural change facilitates cognate promoter-enhancer contacts and also requires Myc and continual ATP production. Our results thus define the nature and transcriptional impact of chromatin decondensation and reveal an unexpected role for Myc in the establishment of nuclear topology in mammalian cells.


Sujet(s)
Lymphocytes B/métabolisme , Cycle cellulaire , Noyau de la cellule/métabolisme , Assemblage et désassemblage de la chromatine , Chromatine/métabolisme , Histone/métabolisme , Activation des lymphocytes , Protéines proto-oncogènes c-myc/métabolisme , Acétyl coenzyme A/métabolisme , Acétylation , Adénosine triphosphate/métabolisme , Animaux , Lymphocytes B/immunologie , Lignée cellulaire , Chromatine/composition chimique , Chromatine/génétique , Méthylation de l'ADN , Épigenèse génétique , Génotype , Histone/composition chimique , Immunité humorale , Méthylation , Souris de lignée C57BL , Souris knockout , Conformation d'acide nucléique , Phénotype , Motifs et domaines d'intéraction protéique , Maturation post-traductionnelle des protéines , Protéines proto-oncogènes c-myc/composition chimique , Protéines proto-oncogènes c-myc/génétique , Imagerie de molécules uniques , Relation structure-activité , Facteurs temps , Transcription génétique
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