ArticleBMC genomics2023
The esBAF and ISWI nucleosome remodeling complexes influence occupancy of overlapping dinucleosomes and fragile nucleosomes in murine embryonic stem cells.
Article in BMC genomics, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. An erratum has been issued. Cited by 24 papers.
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Who cites it
24 citing papers in PubMed, 37 citations in OpenAlex.
- Structural basis of asymmetric transcription through a composite nucleosome formed by a hexasome and an octasome.Nature structural & molecular biology · 2026Article
- Article
- esBAF and INO80C fine-tune subcompartments and differentially regulate enhancer-promoter interactions.Genetics · 2026Article
- Article
- Article
- Equine histones are mobilized within equid alphaherpesvirus 1 (EHV1) replication compartments.Journal of virology · 2025Article
- Deciphering histone mark-specific fine-scale chromatin organization at high resolution with Micro-C-ChIP.Nature communications · 2025Article
- Fragile nucleosomes are essential for RNA Polymerase II to transcribe in eukaryotes.bioRxiv : the preprint server for biology · 2025Article
- The histone chaperone Spt6 controls chromatin structure through its conserved N-terminal domain.Molecular cell · 2025Article
- esBAF and INO80C fine-tune subcompartments and differentially regulate enhancer-promoter interactions.bioRxiv : the preprint server for biology · 2025Article
- A direct interaction between the Chd1 CHCT domain and Rtf1 controls Chd1 distribution and nucleosome positioning on active genes.Nucleic acids research · 2025Article
- Chromatin architecture mapping by multiplex proximity tagging.Molecular cell · 2025Article
- Cold-induced nucleosome dynamics linked to silencing of Arabidopsis FLC.Nature communications · 2025Article
- Widespread impact of nucleosome remodelers on transcription at cis-regulatory elements.Cell reports · 2025Article
- Compromised two-start zigzag chromatin folding in immature mouse retina cells driven by irregularly spaced nucleosomes with short DNA linkers.Nucleic acids research · 2025Article
- Beyond genomic weaving: molecular roles for CTCF outside cohesin loop extrusion.Current opinion in genetics & development · 2025Review
- Beyond the mono-nucleosome.Biochemical Society transactions · 2025Review
- H3.3K122A results in a neomorphic phenotype in mouse embryonic stem cells.Epigenetics & chromatin · 2024Article
- Resolution of transcription-induced hexasome-nucleosome complexes by Chd1 and FACT.Molecular cell · 2024Article
- H3.3K122A results in a neomorphic phenotype in mouse embryonic stem cells.Research square · 2024Article
Corrections and comments
- Erratum issued
Authors and funding
4 authors at 2 institutions in 1 country.
Funding
Abstract
backgroundNucleosome remodeling factors regulate the occupancy and positioning of nucleosomes genome-wide through ATP-driven DNA translocation. While many nucleosomes are consistently well-positioned, some nucleosomes and alternative nucleosome structures are more sensitive to nuclease digestion or are transitory. Fragile nucleosomes are nucleosome structures that are sensitive to nuclease digestion and may be composed of either six or eight histone proteins, making these either hexasomes or octasomes. Overlapping dinucleosomes are composed of two merged nucleosomes, lacking one H2A:H2B dimer, creating a 14-mer wrapped by ~ 250 bp of DNA. In vitro studies of nucleosome remodeling suggest that the collision of adjacent nucleosomes by sliding stimulates formation of overlapping dinucleosomes.
resultsTo better understand how nucleosome remodeling factors regulate alternative nucleosome structures, we depleted murine embryonic stem cells of the transcripts encoding remodeler ATPases BRG1 or SNF2H, then performed MNase-seq. We used high- and low-MNase digestion to assess the effects of nucleosome remodeling factors on nuclease-sensitive or "fragile" nucleosome occupancy. In parallel we gel-extracted MNase-digested fragments to enrich for overlapping dinucleosomes. We recapitulate prior identification of fragile nucleosomes and overlapping dinucleosomes near transcription start sites, and identify enrichment of these features around gene-distal DNaseI hypersensitive sites, CTCF binding sites, and pluripotency factor binding sites. We find that BRG1 stimulates occupancy of fragile nucleosomes but restricts occupancy of overlapping dinucleosomes.
conclusionsOverlapping dinucleosomes and fragile nucleosomes are prevalent within the ES cell genome, occurring at hotspots of gene regulation beyond their characterized existence at promoters. Although neither structure is fully dependent on either nucleosome remodeling factor, both fragile nucleosomes and overlapping dinucleosomes are affected by knockdown of BRG1, suggesting a role for the complex in creating or removing these structures.
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