Publication | Open Access
Structure based design, synthesis and activity studies of small hybrid molecules as HDAC and G9a dual inhibitors
35
Citations
35
References
2017
Year
Histone ModificationsCombinatorial ChemistryEpigenetic ChangeCompound 14Activity StudiesMolecular BiologySmall Hybrid MoleculesChemical BiologyPharmaceutical ChemistryTumor BiologyMedicinal ChemistryHistone ProteinsAnti-cancer AgentCancer ResearchBiochemistryHistone 3Epigenetic RegulationPharmacologyBiomolecular EngineeringG9a Dual InhibitorsChromatinNatural SciencesRational Drug DesignEpigenomicsCancer GenomicsMolecular BasisMedicineSmall MoleculesDrug Discovery
Aberrant enzymatic activities or expression profiles of epigenetic regulations are therapeutic targets for cancers. Among these, histone 3 lysine 9 methylation (H3K9Me2) and global de-acetylation on histone proteins are associated with multiple cancer phenotypes including leukemia, prostatic carcinoma, hepatocellular carcinoma and pulmonary carcinoma. Here, we report the discovery of the first small molecule capable of acting as a dual inhibitor targeting both G9a and HDAC. Our structure based design, synthesis, and screening for the dual activity of the small molecules led to the discovery of compound 14 which displays promising inhibition of both G9a and HDAC in low micro-molar range in cell based assays.
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