articleTop 1% cited
Epigenetic remodeling of the fungal secondary metabolome
Organic & Biomolecular Chemistry · 2008 · Vol. 6(11) · pp. 1895–1895
Russell B. Williams(University of Oklahoma)Jon C. Henrikson(University of Oklahoma)Ashley R. Hoover(University of Oklahoma)Andrlynn E. Lee(University of Oklahoma)Robert H. Cichewicz✉(University of Oklahoma)
Abstract
Fungi treated with DNA methyltransferase and histone deacetylase inhibitors exhibited natural product profiles with enhanced chemical diversity demonstrating that small-molecule epigenetic modifiers are effective tools for rationally controlling the native expression of fungal biosynthetic pathways and generating new biomolecules.
Microbial Natural Products and BiosynthesisFungal Biology and ApplicationsPlant-Microbe Interactions and ImmunityMetabolomeChemistryEpigeneticsMethyltransferaseHistone deacetylaseHistoneNatural productSmall moleculeBiomoleculeHistone acetyltransferase
MeSH terms
Chromatography, High Pressure LiquidChromatography, Thin LayerFungiMagnetic Resonance SpectroscopyRNA, RibosomalSpectrophotometry, UltravioletMass SpectrometryEpigenesis, Genetic
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