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Histone acetylation is widely assumed to directly instruct gene activation. Among acetylated residues, H4K16ac is one of the most abundant modifications, conserved across all eukaryotes. Here we analyzed histone PTM profiles in MSL KO and HDAC inhibitor-treated cells.
ORGANISM(S): Homo sapiens (Human) 
2025-09-29 | PXD066155 | Pride
Full title: Altered levels of MOF (member of MYST family histone acetyl transferase) and decreased levels of H4K16ac correlate with a defective DNA damage response (DDR). The human MOF gene encodes a protein that specifically acetylates histone H4 at lysine 16 (H4K16ac). Here we show that altered le...
ORGANISM(S): Homo sapiens 
H4K16ac developmental dynamics during Drosophila development [DNA]
ChIP-seq analysis of H3K9ac and H4K16ac
Cellular senescence is a stable proliferation arrest that suppresses tumorigenesis. Histone chaperone HIRA deposits nucleosome-destabilizing histone variant H3.3 into chromatin in a DNA replication-independent manner. Histone H3.3 and a subset of other typically M-bM-^@M-^\replication-dependentM-bM-...
ORGANISM(S): Homo sapiens 
ChIP of H4K16ac
MOF, H4 and H4K16ac ChIP-seq experiments in D.melanogaster
H4K16ac contributes to chromatin compartment reorganization during mitotic and meiotic transitions [CUTnTAG]
H4K16ac and RNAPol2 CUT&Tag of Drosophila Melanogaster and Bacillus Grandii
H4K16ac Cut&Tag profiling of Bone Marrow Derived macrophage stimulated with R848
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