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KDM3A catalysed formation of hydroxyacetyl-lysine on histone H3K9

GSE282321 Homo sapiens Genome binding/occupancy profiling by high throughput sequencing 5 samples Submitted 2025/12/15 Platform GPL18573
Summary
Histone modifications, including Ne-lysine acetylation and methylation, play critical roles in eukaryotic transcription. The addition of acetyl- and methyl-groups and removal of acetyl-groups involves redox neutral reactions, whereas demethylation is O2 dependent, a reaction with potential to enable O2 availability mediated regulation, as occurs for reactions catalysed by the 2-oxoglutarate dependent hypoxia-inducible factor (HIF) hydroxylases. A screen for substrates of the HIF-regulated Jumonji-C (JmjC) lysine demethylase KDM3A led to the finding that purified recombinant KDM3A catalyses oxidation of the Ne-acetyl group of Lys-9 of histone H3 giving an Ne-hydroxyacetyl-lysine residue. Studies employing a Ne-hydroxyacetyl-lysine selective antibody and mass spectrometry support the cellular relevance of Ne-hydroxyacetyl-lysine. The combined biochemical and cellular results reveal evidence for an unanticipated O2-mediated link between histone lysine Ne-acetylation and JmjC catalysis. Future work can explore the biological significance of Ne-hydroxyacetylation, including in the hypoxic response where KDM3A plays a role in regulating HIF target genes.
Published in
KDM3A catalyses the oxidation of acetyl-lysine to hydroxyacetyl-lysine on histone H3K9
Belle R, Bukowski JP, Schiller R et al. · Nature chemistry 2026 · PMID 41986689 · doi:10.1038/s41557-026-02112-x
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Also filed as BioProject PRJNA1188125 and SRA study SRP546217. Searching any of these in the dataset finder brings you back here.

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