A Unifying Bioinspired Synthesis of (-)-Asperaculin A and (-)-Penifulvin D.
Ian R GeorgeMiguel López-TenaAnders P SundinDaniel StrandPublished in: Organic letters (2021)
The first syntheses of the isomeric dioxafenestrene natural products (-)-asperaculin A and (-)-penifulvin D are reported. Each target is formed selectively by choice of oxidant in a final divergent bioinspired Baeyer-Villiger (BV) reaction. Density functional theory calculations reveal that electrostatic interactions between the oxidant leaving group and the lactone motif accounts for a reversal of selectivity with H2O2/H3O+ compared to peracids. Synthetic features include forging the polycyclic carbon framework with a diastereoselective meta-photocycloaddition biased by an ether substituent at the aryl α-position. The encumbered tertiary alcohol was installed by cyanation of a ketone intermediate followed by nonaqueous hydrolysis of the resulting delicate cyanohydrin.
Keyphrases
- density functional theory
- molecular dynamics
- anti inflammatory
- lipopolysaccharide induced
- genome wide
- lps induced
- capillary electrophoresis
- single cell
- molecular dynamics simulations
- anaerobic digestion
- ionic liquid
- alcohol consumption
- decision making
- inflammatory response
- gene expression
- mass spectrometry
- structural basis