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Epigenetic alterations are central drivers of cardiovascular aging, with histone modifications regulating gene expression through chromatin remodeling and changes in DNA accessibility. However, the mechanisms underlying these epigenetic shifts in the aging heart remain poorly defined. Here, we id...

2026-02-11 | MTBLS13890 | MetaboLights
Using Chromatin-immunoprecipitation and NGS, we profiled the genome-wdie H3K9Me3, H3K27Me and Brg1 distribution between Wild Type (Wt) and Actb-/- (KNO) Mouse Embryonic Fibroblast
ORGANISM(S): Mus musculus 
2017-07-01 | GSE100096 | GEO
Genome-wide maps of H3K9Me3, H3K27Me and Brg1 distribution between Wild Type (Wt) and Actb-/- (KNO) Mouse Embryonic Fibroblast
We characterize the Polycomb system that assembles repressive subtelomeric domains of H3K27 methylation (H3K27me) in the yeast Cryptococcus neoformans. Purification of this PRC2-like protein complex reveals orthologs of animal PRC2 components as well as a chromodomain-containing subunit, Ccc1, which...
ORGANISM(S): Cryptococcus neoformans 
2014-11-10 | GSE61550 | GEO
Telomeres are crucial for maintaining chromosomal integrity and are characterized by repetitive sequences, which may be stabilized by the shelterin protein complex and/or by formation of secondary structures, such as G-quadruplexes (G4 DNA). Frequently, subtelomeric regions are decorated with di- an...
ORGANISM(S): Neurospora crassa 
2026-03-30 | GSE301562 | GEO
Telomeres are crucial for maintaining chromosomal integrity and are characterized by repetitive sequences, which may be stabilized by the shelterin protein complex and/or by formation of secondary structures, such as G-quadruplexes (G4 DNA). Frequently, subtelomeric regions are decorated with di- an...
ORGANISM(S): Neurospora crassa 
2026-03-30 | GSE301563 | GEO
Methylated lysine 27 on histone H3 (H3K27me) marks repressed "facultative heterochromatin", including developmentally regulated genes in plants and animals. The mechanisms responsible for localization of H3K27me are largely unknown, perhaps in part because of the complexity of epigenetic regulatory ...
ORGANISM(S): Neurospora crassa 
2015-11-03 | GSE68897 | GEO
Epigenetic therapies that cause genome-wide epigenetic alterations, could trigger local interplay between different histone marks, leading to a switch of transcriptional outcome and cellular phenotypes. In human cancers with diverse oncogenic activation, how oncogenic pathways cooperate with epigene...
ORGANISM(S): Homo sapiens 
2024-10-18 | GSE187427 | GEO
Epigenetic therapies that cause genome-wide epigenetic alterations, could trigger local interplay between different histone marks, leading to a switch of transcriptional outcome and cellular phenotypes. In human cancers with diverse oncogenic activation, how oncogenic pathways cooperate with epigene...
ORGANISM(S): Homo sapiens 
2024-10-18 | GSE189215 | GEO
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