Biosynthesis of diterpenoid aphidicolin: Isolation of intermediates from P-450 inhibitor treated mycelia of Phoma betae
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,Drug Discovery,Biochemistry
Reference40 articles.
1. Simple, efficient method for studying biosynthetic oxidation using P-450 inhibitors: late oxidative modification in betaenone B biosynthesis
2. Useful approach to find the plausible biosynthetic precursors of secondary metabolites using P-450 inhibitors: postulated intermediates of chaetoglobosin A
3. Accumulation of Grisorixin Caused by Treating a Nigericin-producing Strain with a P-450 Inhibitor
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1. The Genus Phoma: A Review of Its Potential Bioactivities, Implications, and Prospects;Phoma: Diversity, Taxonomy, Bioactivities, and Nanotechnology;2021-11-20
2. Aphidicolin: Its Chemistry and Biosynthesis;Journal of Chemical Research;2018-08
3. Total Biosynthesis of Diterpene Aphidicolin, a Specific Inhibitor of DNA Polymerase α: Heterologous Expression of Four Biosynthetic Genes inAspergillus oryzae;Bioscience, Biotechnology, and Biochemistry;2011-09-23
4. Isolation and Characterization of Aphidicolin and Chlamydosporol Derivatives from Tolypocladium inflatum;Journal of Natural Products;2011-08-03
5. Biosynthesis of aphidicolin proceeds via the mevalonate pathway in the endophytic fungus Nigrospora sphaerica;Journal of the Brazilian Chemical Society;2011-01
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