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Relics of repeat-induced point mutation direct heterochromatin formation in Neurospora crassa
PubMed Full text in PMC Similar studies Analyze with GEO2R
Genome-wide maps of H3K9me3 with tethered heterochromatin machinery
PubMed Full text in PMC Similar studies SRA Run Selector
Loss of HP1 causes depletion of H3K27me3 from facultative heterochromatin and gain of H3K27me2 at constitutive heterochromatin
Context dependent Histone H3 Lysine 4 methylation is necessary for repression and is a requisite modification for facultative heterochromatin at distinct loci
PubMed Full text in PMC Similar studies
Context dependent Histone H3 Lysine 4 methylation is necessary for repression and is a requisite modification for facultative heterochromatin at distinct loci [RNA-seq]
Context dependent Histone H3 Lysine 4 methylation is necessary for repression and is a requisite modification for facultative heterochromatin at distinct loci [ChIP-seq]
Loss of Lysine-Specific Demethylase 1 (LSD1) Drives Aberrant Heterochromatin Formation in Neurospora crassa
Neurospora crassa genome organization requires subtelomeric facultative heterochromatin
Dual chromatin recognition by the histone deacetylase complex HCHC is required for proper DNA methylation in Neurospora crassa
Neurospora importin alpha compromises H3K9me3 and cytosine methylation levels through inappropriate localization of the heterochromatin machinery
Bisulfite-seq from Neurospora crassa a wild type (WT) strain grown in minimum medium, a dim-3 strain grown in minimum medium, and a dim-3 strain grown with supplemented histidine
H3K9me3 ChIP-seq from Neurospora crassa wild type (WT) and dim-3 (severely reduced H3K9me3 levels) strains
HiC of Wild Type Neurospora crassa and mutants deficient in heterochromatin formation
Telomere repeats induce domains of H3K27 methylation in Neurospora
A Light-Inducible Strain for Genome-Wide Histone Turnover Profiling in Neurospora crassa
Complete loss of H3K9 methylation dissolves mouse heterochromatin organization [RNA-seq 2]
Complete loss of H3K9 methylation dissolves mouse heterochromatin organization [ChIP-seq]
Complete loss of H3K9 methylation dissolves mouse heterochromatin organization
Complete loss of H3K9 methylation dissolves mouse heterochromatin organization [ATAC-seq]
Complete loss of H3K9 methylation dissolves mouse heterochromatin organization [RNA-seq]
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