RSS-Feed abonnieren
DOI: 10.1055/s-2006-947195
Post-Genome Research on the Biosynthesis of Ergot Alkaloids
In memory of Professor Ernst ReinhardPublikationsverlauf
Received: March 1, 2006
Accepted: June 8, 2006
Publikationsdatum:
10. August 2006 (online)

Abstract
Genome sequencing provides new opportunities and challenges for identifying genes for the biosynthesis of secondary metabolites. A putative biosynthetic gene cluster of fumigaclavine C, an ergot alkaloid of the clavine type, was identified in the genome sequence of Aspergillus fumigatus by a bioinformatic approach. This cluster spans 22 kb of genomic DNA and comprises at least 11 open reading frames (ORFs). Seven of them are orthologous to genes from the biosynthetic gene cluster of ergot alkaloids in Claviceps purpurea. Experimental evidence of the identified cluster was provided by heterologous expression and biochemical characterization of two ORFs, FgaPT1 and FgaPT2, in the cluster of A. fumigatus, which show remarkable similarities to dimethylallyltryptophan synthase from C. purpurea and function as prenyltransferases. FgaPT2 converts L-tryptophan to dimethylallyltryptophan and thereby catalyzes the first step of ergot alkaloid biosynthesis, whilst FgaPT1 catalyzes the last step of the fumigaclavine C biosynthesis, i. e., the prenylation of fumigaclavine A at C-2 position of the indole nucleus. In addition to information obtained from the gene cluster of ergot alkaloids from C. purpurea, the identification of the biosynthetic gene cluster of fumigaclavine C in A. fumigatus opens an alternative way to study the biosynthesis of ergot alkaloids in fungi.
Key words
Aspergillus fumigatus - biosynthetic gene cluster - ergot alkaloid - fumigaclavine
References
- 1 Floss H G. Biosynthesis of ergot alkaloids and related compounds. Tetrahedron. 1976; 32 873-912
- 2 Williams R M, Stocking E M, Sanz-Cervera J F. Biosynthesis of prenylated alkaloids derived from tryptophan. Top Curr Chem. 2000; 209 97-173
-
3 Gröger D, Floss H G. Biochemistry of ergot alkaloids - Achievements and challenges. In: Cordell GA
The Alkaloids . Vol. 50 San Diego; Academic Press 1998: p 171-218 - 4 Haarmann T, Machado C, Lübbe Y, Correia T, Schardl C L, Panaccione D G. et al . The ergot alkaloid gene cluster in Claviceps purpurea: Extension of the cluster sequence and intra species evolution. Phytochemistry. 2005; 66 1312-20
- 5 Haarmann T, Ortel I, Tudzynski P, Keller U. Identification of the cytochrome P450 monooxygenase that bridges the clavine and ergoline alkaloid pathways. ChemBioChem. 2006; 7 645-52
- 6 Flieger M, Wurst M, Shelby R. Ergot alkaloids - sources, structures and analytical methods. Folia Microbiol (Praha). 1997; 42 3-30
- 7 Nierman W C, Pain A, Anderson M J, Wortman J R, Kim H S, Arroyo J. et al . Genomic sequence of the pathogenic and allergenic filamentous fungus Aspergillus fumigatus . Nature. 2005; 438 1151-6
- 8 Unsöld I A, Li S -M. Overproduction, purification and characterization of FgaPT2, a dimethylallyltryptophan synthase from Aspergillus fumigatus . Microbiology. 2005; 151 1499-1505
- 9 Unsöld I A, Li S -M. Reverse prenyltransferase in the biosynthesis of fumigaclavine C in Aspergillus fumigatus: gene expression, purification and characterization of fumigaclavine C synthase FgaPT1. Chembiochem. 2006; 7 158-64
- 10 Keller N P, Turner G, Bennett J W. Fungal secondary metabolism - from biochemistry to genomics. Nat Rev Microbiol. 2005; 3 937-47
- 11 Coyle C M, Panaccione D G. An ergot alkaloid biosynthesis gene and clustered hypothetical genes from Aspergillus fumigatus . Appl Environ Microbiol. 2005; 71 3112-8
Shu-Ming Li
Institut für Pharmazeutische Biologie und Biotechnologie
Heinrich-Heine-Universität Düsseldorf
Universitätsstr. 1
40225 Düsseldorf
Germany
Telefon: +49-211-81-14180
Fax: +49-211-81-11923
eMail: shuming.li@uni-duesseldorf.de