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PMID: 18952140 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The global regulator LaeA controls penicillin biosynthesis, pigmentation and sporulation, but not roquefortine C synthesis in Penicillium chrysogenum.

Biochimie ·Vol. 91 ·No. 2 ·2009-02-00 ·Pages 214-25

Kosalková K, García-Estrada C, Ullán RV, Godio RP, Feltrer R, Teijeira F, Mauriz E, Martín JF

Abstract

The biosynthesis of the beta-lactam antibiotic penicillin is an excellent model for the study of secondary metabolites produced by filamentous fungi due to the good background knowledge on the biochemistry and molecular genetics of the beta-lactam producing microorganisms. The three genes (pcbAB, pcbC, penDE) encoding enzymes of the penicillin pathway in Penicillium chrysogenum are clustered, but no penicillin pathway-specific regulators have been found in the genome region that contains the penicillin gene cluster. The biosynthesis of this beta-lactam is controlled by global regulators of secondary metabolism rather than by a pathway-specific regulator. In this work we have identified the gene encoding the secondary metabolism global regulator LaeA in P. chrysogenum (PcLaeA), a nuclear protein with a methyltransferase domain. The PclaeA gene is present as a single copy in the genome of low and high-penicillin producing strains and is not located in the 56.8-kb amplified region occurring in high-penicillin producing strains. Overexpression of the PclaeA gene gave rise to a 25% increase in penicillin production. PclaeA knock-down mutants exhibited drastically reduced levels of penicillin gene expression and antibiotic production and showed pigmentation and sporulation defects, but the levels of roquefortine C produced and the expression of the dmaW involved in roquefortine biosynthesis remained similar to those observed in the wild-type parental strain. The lack of effect on the synthesis of roquefortine is probably related to the chromatin arrangement in the low expression roquefortine promoters as compared to the bidirectional pbcAB-pcbC promoter region involved in penicillin biosynthesis. These results evidence that PcLaeA not only controls some secondary metabolism gene clusters, but also asexual differentiation in P. chrysogenum.

MeSH Terms
Amino Acid Sequence Cluster Analysis Computational Biology/methods Gene Dosage Gene Expression Regulation Genes, Fungal Genes, Regulator Heterocyclic Compounds, 4 or More Rings/analysis,metabolism Indoles/analysis,metabolism Molecular Sequence Data Multigene Family Mutation Nuclear Proteins/chemistry Penicillins/biosynthesis Penicillium chrysogenum/genetics,metabolism Pigmentation/genetics Piperazines/analysis,metabolism Plasmids Protein Structure, Tertiary Sequence Homology, Amino Acid Spores, Fungal/physiology Transcription, Genetic
Chemicals
Heterocyclic Compounds, 4 or More Rings Indoles Nuclear Proteins Penicillins Piperazines roquefortine
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Kosalková Katarina
Instituto de Biotecnología, León, Spain.
García-Estrada Carlos
Ullán Ricardo V
Godio Ramiro P
Feltrer Raúl
Teijeira Fernando
Mauriz Elba
Martín Juan Francisco
Article Info
Journal
Biochimie
Abbr.
Biochimie
ISSN
1638-6183
Published
2009-02-00
Epub
2008-00-09
Pages
214-25
Language
English
Region
France
NLM ID
1264604
Subset
IM
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