The relationship between nanoscale genome organization and gene expression in mouse embryonic stem cells during pluripotency transition.
Journal
Nucleic acids research
ISSN: 1362-4962
Titre abrégé: Nucleic Acids Res
Pays: England
ID NLM: 0411011
Informations de publication
Date de publication:
08 Jun 2024
08 Jun 2024
Historique:
accepted:
05
06
2024
revised:
16
05
2024
received:
03
04
2023
medline:
8
6
2024
pubmed:
8
6
2024
entrez:
8
6
2024
Statut:
aheadofprint
Résumé
During early development, gene expression is tightly regulated. However, how genome organization controls gene expression during the transition from naïve embryonic stem cells to epiblast stem cells is still poorly understood. Using single-molecule microscopy approaches to reach nanoscale resolution, we show that genome remodeling affects gene transcription during pluripotency transition. Specifically, after exit from the naïve pluripotency state, chromatin becomes less compacted, and the OCT4 transcription factor has lower mobility and is more bound to its cognate sites. In epiblast cells, the active transcription hallmark, H3K9ac, decreases within the Oct4 locus, correlating with reduced accessibility of OCT4 and, in turn, with reduced expression of Oct4 nascent RNAs. Despite the high variability in the distances between active pluripotency genes, distances between Nodal and Oct4 decrease during epiblast specification. In particular, highly expressed Oct4 alleles are closer to nuclear speckles during all stages of the pluripotency transition, while only a distinct group of highly expressed Nodal alleles are in close proximity to Oct4 when associated with a nuclear speckle in epiblast cells. Overall, our results provide new insights into the role of the spatiotemporal genome remodeling during mouse pluripotency transition and its correlation with the expression of key pluripotency genes.
Identifiants
pubmed: 38850157
pii: 7689922
doi: 10.1093/nar/gkae476
pii:
doi:
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Subventions
Organisme : European Union's Horizon
ID : 686637
Organisme : Ministerio de Ciencia e Innovación
ID : PID2020-114080GB-I00/ AEI / 10.13039/501100011033
Organisme : Secretaria d'Universitats i Recerca del Departament d'Empresa iConeixement de la Generalitat de Catalunya
ID : 2017 SGR 689
Organisme : Fundació La Marató de TV3
ID : 202027-10
Organisme : National Natural Science Foundation of China
ID : 31971177
Organisme : Guangzhou Regenerative Medicine and Health Guangdong Laboratory
ID : 2018GZR110103001
Organisme : The Guangzhou Key Projects of Brain Science and Brain-Like Intelligence Technology
ID : 20200730009
Organisme : European Commission
ID : 754422
Organisme : People Program (Marie Curie Actions) FP7/2007-2013
ID : 608959
Organisme : Juan de la Cierva-Incorporación
ID : 2014ES05SFOP007
Organisme : European Social Fund
Organisme : La Caixa' Foundation fellowship
ID : LCF/BQ/DR20/11790016
Informations de copyright
© The Author(s) 2024. Published by Oxford University Press on behalf of Nucleic Acids Research.