Abstract
The ability to acquire iron in vivo is essential for most microbial pathogens. Here we show that Aspergillus fumigatus does not have specific mechanisms for the utilization of host iron sources. However, it does have functional siderophore-assisted iron mobilization and reductive iron assimilation systems, both of which are induced upon iron deprivation. Abrogation of reductive iron assimilation, by inactivation of the high affinity iron permease (FtrA), has no effect on virulence in a murine model of invasive aspergillosis. In striking contrast, A. fumigatus L-ornithine-N5-monooxygenase (SidA), which catalyses the first committed step of hydroxamate-type siderophore biosynthesis, is absolutely essential for virulence. Thus, A. fumigatus SidA is an essential virulence attribute. Combined with the absence of a sidA ortholog-and the fungal siderophore system in general-in mammals, these data demonstrate that the siderophore biosynthetic pathway represents a promising new target for the development of antifungal therapies.
MeSH Terms
Animals
Aspergillus fumigatus/enzymology,metabolism,pathogenicity
Base Sequence
Blotting, Northern
Chromatography, High Pressure Liquid
DNA Primers
DNA, Complementary/genetics
Fungal Proteins/genetics
Iron/metabolism
Mice
Mixed Function Oxygenases/genetics,metabolism
Molecular Sequence Data
Mutation/genetics
Phenotype
Plasmids/genetics
Reverse Transcriptase Polymerase Chain Reaction
Sequence Analysis, DNA
Siderophores/biosynthesis
Chemicals
DNA Primers
DNA, Complementary
Fungal Proteins
Siderophores
Iron
Mixed Function Oxygenases
ornithine N5-oxygenase
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Schrettl Markus
Dept. of Molecular Biology, Medical University Innsbruck, Peter-Mayr-Str. 4b/III, A-6020 Innsbruck, Austria. hubertus.haas@uibk.ac.at.
Bignell Elaine
Kragl Claudia
Joechl Chistoph
Rogers Tom
Arst Herbert N
Haynes Ken
Haas Hubertus
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