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Psammaplins from the Sponge <i>Pseudoceratina </i><i>p</i><i>urpurea:</i> Inhibition of Both Histone Deacetylase and DNA Methyltransferase
307
Citations
23
References
2003
Year
Epigenetic ChangeMolecular BiologyDna MethyltransferaseChemical BiologyEpigeneticsPharmaceutical ChemistryMedicinal ChemistryBiosynthesisBiochemical TaxonomyNew Bromotyrosine DerivativesSponge Pseudoceratina PurpureaBiochemistryBoth Histone DeacetylaseBromotyrosine DerivativesNatural Product SynthesisPharmacologyEpigenetic RegulationProtein BiosynthesisChromatinChromatin RemodelingNatural SciencesEpigenomicsCellular BiochemistryMedicineSynthetic Chemistry
Four novel bisulfide bromotyrosine derivatives, psammaplins E (9), F (10), G (11), and H (12), and two new bromotyrosine derivatives, psammaplins I (13) and J (14), were isolated from the sponge Pseudoceratina purpurea, along with known psammaplins A (4), B (6), C (7), and D (8) and bisaprasin (5). The structures of psammaplins E (9) and F (10), which each contain an oxalyl group rarely found in marine organisms, were determined by spectroscopic analysis. Compounds 4, 5, and 10 are potent histone deacetylase inhibitors and also show mild cytotoxicity. Furthermore, compounds 4, 5, and 11 are potent DNA methyltransferase inhibitors. The biogenetic pathway previously proposed for the psammaplins class is also revisited.
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