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Histone H3K9 methylation promotes formation of genome compartments in C. elegans via chromosome compaction and perinuclear anchoring
PubMed Full text in PMC Similar studies
Histone H3K9 methylation promotes formation of genome compartments in C. elegans via chromosome compaction and perinuclear anchoring (Hi-C)
PubMed Full text in PMC Similar studies SRA Run Selector
Histone H3K9 methylation promotes formation of genome compartments in C. elegans via chromosome compaction and perinuclear anchoring (ChIP-seq)
DamID of Dam::EMR-1 in Caenorhabditis elegans L1 larvae
PubMed Similar studies SRA Run Selector
Active chromatin marks, H3K36me and MRG-1, drive spatial sequestration of heterochromatin
PubMed Similar studies
Gene expression changes upon depletion of H3K36 methylation by mutating met-1 and RNAi depleting mes-4 in worm L1 larvae
Gene expression changes in mrg-1 mutant L1 larvae compared to wild type.
LMN-1-DamID in N2 and set-25(n5021) met-2(n4256) mutant early C. elegans embryos
PubMed Similar studies Analyze with GEO2R
Perinuclear anchoring of H3K9-methylated chromatin stabilizes induced cell fate
LEM-2 ChIP-seq to study chromatin anchoring
RNA-seq for monitoring expression changes in absence of chromatin anchoring
HP1 in C. elegans
PubMed Full text in PMC Similar studies Analyze with GEO2R
HPL-2 in PFR40 (hpl-2) early embryo
HPL-2 in N2 (wild-type) early embryo
HPL-2 in GW638 (met-2 set-25) MxEmb
Expression profiling in PFR40 (hpl-2) mutant early embryo
An unstructured MET-2/SETDB1 cofactor ensures H3K9me2, focus formation and perinuclear anchoring
An unstructured MET-2/SETDB1 cofactor ensures H3K9me2, focus formation and perinuclear anchoring [RNA-seq]
An unstructured MET-2/SETDB1 cofactor ensures H3K9me2, focus formation and perinuclear anchoring [ChIP-seq]
Genomic distribution of H3K9me2 in wild-type vs. arle-14 mutant C. elegans embryos
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