Article

Genome-based characterization of two prenylation steps in the assembly of the stephacidin and notoamide anticancer agents in a marine-derived Aspergillus sp.

Life Sciences Institute and Department of Medicinal Chemistry, University of Michigan, Ann Arbor, Michigan 48109, USA.
Journal of the American Chemical Society (impact factor: 9.91). 09/2010; 132(36):12733-40. DOI:10.1021/ja1049302 pp.12733-40
Source: PubMed

ABSTRACT Stephacidin and notoamide natural products belong to a group of prenylated indole alkaloids containing a core bicyclo[2.2.2]diazaoctane ring system. These bioactive fungal secondary metabolites have a range of unusual structural and stereochemical features but their biosynthesis has remained uncharacterized. Herein, we report the first biosynthetic gene cluster for this class of fungal alkaloids based on whole genome sequencing of a marine-derived Aspergillus sp. Two central pathway enzymes catalyzing both normal and reverse prenyltransfer reactions were characterized in detail. Our results establish the early steps for creation of the prenylated indole alkaloid structure and suggest a scheme for the biosynthesis of stephacidin and notoamide metabolites. The work provides the first genetic and biochemical insights for understanding the structural diversity of this important family of fungal alkaloids.

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Keywords

bioactive fungal secondary metabolites
 
biochemical insights
 
core bicyclo[2.2.2]diazaoctane ring system
 
first biosynthetic gene cluster
 
first genetic
 
fungal alkaloids
 
Herein
 
notoamide metabolites
 
notoamide natural products
 
prenylated indole alkaloid structure
 
prenylated indole alkaloids
 
reverse prenyltransfer reactions
 
steps
 
stereochemical features
 
structural diversity
 
whole genome sequencing