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1.
J Am Chem Soc ; 133(28): 10990-8, 2011 Jul 20.
Article in English | MEDLINE | ID: mdl-21675761

ABSTRACT

The biosynthesis of the fungal metabolite tenellin from Beauveria bassiana CBS110.25 was investigated in the presence of the epigenetic modifiers 5-azacytidine and suberoyl bis-hydroxamic acid and under conditions where individual genes from the tenellin biosynthetic gene cluster were silenced. Numerous new compounds were synthesized, indicating that the normal predominant biosynthesis of tenellin is just one outcome out of a diverse array of possible products. The structures of the products reveal key clues about the programming selectivities of the tenellin polyketide synthase.


Subject(s)
Beauveria/enzymology , Polyketide Synthases/genetics , Polyketide Synthases/metabolism , Beauveria/genetics , Beauveria/metabolism , Gene Silencing , Models, Molecular , Molecular Conformation , Oxidation-Reduction , Polyketide Synthases/deficiency , Pyridones/chemistry , Pyridones/metabolism , RNA, Messenger/genetics , RNA, Messenger/metabolism
3.
J Am Chem Soc ; 130(52): 17988-96, 2008 Dec 31.
Article in English | MEDLINE | ID: mdl-19067514

ABSTRACT

Late stage oxidations during the biosynthesis of the 2-pyridone tenellin in the insect pathogenic fungus Beauveria bassiana were investigated by a combination of gene knockout, antisense RNA, and gene coexpression studies. Open reading frames (ORF) 3 and 4 of the tenellin biosynthetic gene cluster were previously shown to encode a trans-acting enoyl reductase and a hybrid polyketide synthase nonribosomal peptide synthetase (PKS-NRPS), respectively, which together synthesize the acyltetramic acid pretenellin-A. In this work, we have shown that ORF1 encodes a cytochrome P450 oxidase, which catalyzes an unprecedented oxidative ring expansion of pretenellin-A to form the 2-pyridone core of tenellin and related metabolites, and that this enzyme does not catalyze the formation of a hydroxylated precursor. Similar genes appear to be associated with PKS-NRPS genes in other fungi. ORF2 encodes an unusual cytochrome P450 monooxygenase required for the selective N-hydroxylation of the 2-pyridone which is incapable of N-hydroxylation of acyltetramic acids.


Subject(s)
Beauveria/metabolism , Pyridones/metabolism , Aspergillus oryzae/genetics , Aspergillus oryzae/metabolism , Beauveria/enzymology , Beauveria/genetics , Hydroxylation , NADPH-Ferrihemoprotein Reductase/genetics , NADPH-Ferrihemoprotein Reductase/metabolism , Open Reading Frames , Oxidation-Reduction , RNA, Antisense/genetics
4.
Chembiochem ; 9(4): 585-94, 2008 Mar 03.
Article in English | MEDLINE | ID: mdl-18266306

ABSTRACT

The tenS gene encoding tenellin synthetase (TENS), a 4239-residue polyketide synthase nonribosomal-peptide synthetase (PKS-NRPS) from Beauveria bassiana, was expressed in Aspergillus oryzae M-2-3. This led to the production of three new compounds, identified as acyl tetramic acids, and numerous minor metabolites. Consideration of the structures of these compounds indicates that the putative C-terminal thiolester reductase (R) domain does not act as a reductase, but appears to act as a Dieckmann cyclase (DKC). Expression of tenS in the absence of a trans-acting ER component encoded by orf3 led to errors in assembly of the polyketide component, giving clues to the mode of programming of highly reducing fungal PKS. Coexpression of tenS with orf3 from the linked gene cluster led to the production of a correctly elaborated polyketide. The NRPS adenylation domain possibly shows the first identified fungal signature sequences for tyrosine selectivity.


Subject(s)
Gene Expression Regulation, Enzymologic , Mixed Function Oxygenases/metabolism , Peptide Synthases/metabolism , Polyketide Synthases/metabolism , Pyridones/chemistry , Pyridones/metabolism , Aspergillus/enzymology , Beauveria/enzymology , Molecular Structure , Ribosomes/enzymology
5.
Chembiochem ; 8(3): 289-97, 2007 Feb 12.
Article in English | MEDLINE | ID: mdl-17216664

ABSTRACT

Genomic DNA from the insect pathogenic fungus Beauveria bassiana was used as a template in a PCR with degenerate primers designed to amplify a fragment of a C-methyl transferase (CMeT) domain from a highly reduced fungal polyketide synthase (PKS). The resulting 270-bp PCR product was homologous to other fungal PKS CMeT domains and was used as a probe to isolate a 7.3-kb fragment of genomic DNA from a BamH1 library. Further library probing and TAIL-PCR then gave a 21.9-kb contig that encoded a 12.9-kb fused type I PKS-NRPS ORF together with ORFs encoding other oxidative and reductive enzymes. A directed knockout experiment with a BaR cassette, reported for the first time in B. bassiana, identified the PKS-NRPS as being involved in the biosynthesis of the 2-pyridone tenellin. Other fungal PKS-NRPS genes are known to be involved in the formation of tetramic acids in fungi, and it thus appears likely that related compounds are precursors of 2-pyridones in fungi. B. bassiana tenellin KO and WT strains proved to be equally pathogenic towards insect larvae; this indicated that tenellin is not involved in insect pathogenesis.


Subject(s)
Beauveria/genetics , Beauveria/metabolism , Cloning, Molecular , Pyridones/chemistry , Pyridones/metabolism , Amino Acid Sequence , Gene Targeting , Molecular Sequence Data , Molecular Structure , Sequence Alignment
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