Affiliation:
1. Department of Plant Pathology, University of Wisconsin—Madison, Madison, Wisconsin 53706
Abstract
ABSTRACT
Secondary metabolites, or biochemical indicators of fungal development, are of intense interest to humankind due to their pharmaceutical and/or toxic properties. We present here a novel
Aspergillus
nuclear protein, LaeA, as a global regulator of secondary metabolism in this genus. Deletion of
laeA (
Δ
laeA
) blocks the expression of metabolic gene clusters, including the sterigmatocystin (carcinogen), penicillin (antibiotic), and lovastatin (antihypercholesterolemic agent) gene clusters. Conversely, overexpression of
laeA
triggers increased penicillin and lovastatin gene transcription and subsequent product formation.
laeA
expression is negatively regulated by AflR, a sterigmatocystin Zn
2
Cys
6
transcription factor, in a unique feedback loop, as well as by two signal transduction elements, protein kinase A and RasA. Although these last two proteins also negatively regulate sporulation, Δ
laeA
strains show little difference in spore production compared to the wild type, indicating that the primary role of LaeA is to regulate metabolic gene clusters.
Publisher
American Society for Microbiology
Subject
Molecular Biology,General Medicine,Microbiology
Cited by
792 articles.
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