0000000000116635

AUTHOR

Axel A. Brakhage

showing 7 related works from this author

PKSP-dependent reduction of phagolysosome fusion and intracellular kill of Aspergillus fumigatus conidia by human monocyte-derived macrophages.

2002

Summary Previously, we described the isolation of an Aspergillus fumigatus mutant producing non-pigmented conidia, as a result of a defective polyketide synthase gene, pksP (polyketide synthase involved in pigment biosynthesis). The virulence of the pksP mutant was attenuated in a murine animal infection model and its conidia showed enhanced susceptibility towards damage by monocytes in vitro. Because macrophage-mediated killing is critical for host resistance to aspergillosis, the interaction of both grey-green wild-type conidia and white pksP mutant conidia with human monocyte-derived macrophages (MDM) was studied with respect to intracellular processing of ingested conidia. After phagocy…

PhagocytosisImmunologyMutantVirulenceMicrobiologyPhagolysosomeMonocytesMicrobiologyAspergillus fumigatusConidiumCell FusionPhagocytosisMultienzyme ComplexesVirologyPhagosomesAspergillosisHumansskin and connective tissue diseasesCells CulturedPhagosomebiologyAspergillus fumigatusMacrophagesfungirespiratory systembiology.organism_classificationAcridine OrangeIntracellularCellular microbiology
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Interaction of Human Phagocytes with Pigmentless Aspergillus Conidia

2000

ABSTRACT A defect in the pksP gene of Aspergillus fumigatus is associated with the loss of conidial pigmentation, a profound change of the conidial surface structure, and reduced virulence. The structural change of the conidial surface structure was not observed in similar A. nidulans wA mutants. Our data indicate that the pigment of both species is important for scavenging reactive oxygen species and for protection of conidia against oxidative damage.

ImmunologyVirulencemedicine.disease_causeMicrobiologyAspergillus nidulansConidiumAspergillus fumigatusMicrobiologyMultienzyme ComplexesAspergillus nidulansmedicineskin and connective tissue diseaseschemistry.chemical_classificationPhagocytesAspergillusReactive oxygen speciesbiologyAspergillus fumigatusfungiFungal geneticsFree Radical ScavengersPigments BiologicalSpores FungalOxidantsbiology.organism_classificationInfectious DiseaseschemistryParasitologysense organsFungal and Parasitic InfectionsOxidative stressInfection and Immunity
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Identification of a polyketide synthase gene (pksP) of Aspergillus fumigatus involved in conidial pigment biosynthesis and virulence.

1998

Aspergillus fumigatus is an important pathogen of the immunocompromised host causing pneumonia and invasive disseminated disease with high mortality. Previously, we identified a mutant strain (white, W) lacking conidial pigmentation and, in addition, the conidia showed a smooth surface morphology, whereas wild-type (WT) conidia are grey-green and have a typical ornamentation. W conidia appeared to be less protected against killing by the host defence, e.g., were more susceptible to oxidants in vitro and more efficiently damaged by human monocytes in vitro than WT conidia. When compared to the WT, the W mutant strain showed reduced virulence in a murine animal model. Genetic analysis suggest…

Microbiology (medical)MaleImmunologyMutantGenes FungalMolecular Sequence DataVirulenceMicrobiologyAspergillus fumigatusFungal ProteinsMiceMultienzyme ComplexesPolyketide synthaseImmunology and AllergyAnimalsAmino Acid SequencePathogenGenomic LibrarybiologyBase SequenceVirulenceAspergillus fumigatusfungiWild typeGeneral MedicinePigments Biologicalbiology.organism_classificationSpecific Pathogen-Free OrganismsComplementationTransformation (genetics)Microscopy Electronbiology.proteinSequence AlignmentMedical microbiology and immunology
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Differential Expression of the Aspergillus fumigatus pksP Gene Detected In Vitro and In Vivo with Green Fluorescent Protein

2001

ABSTRACT Aspergillus fumigatus is an important pathogen of immunocompromised hosts, causing pneumonia and invasive disseminated disease with high mortality. To be able to analyze the expression of putative virulence-associated genes of A. fumigatus , the use of the enhanced green fluorescent protein (EGFP) as a reporter was established. Two 5′ sequences, containing the putative promoters of the pyrG gene, encoding orotidine-5′-phosphate decarboxylase, and the pksP gene, encoding a polyketide synthase involved in both pigment biosynthesis and virulence of A. fumigatus , were fused with the egfp gene. The P pksP - egfp construct was integrated via homologous recombination into the genomic pks…

HyphaGenes FungalGreen Fluorescent ProteinsMolecular Sequence DataOrotidine-5'-Phosphate DecarboxylaseImmunologyFluorescence spectrometryGene ExpressionBiologyMicrobiologyMicrobiologyGreen fluorescent proteinAspergillus fumigatusConidiumGenes ReporterMultienzyme ComplexesGene expressionAmino Acid SequenceDNA FungalPathogenGeneBase SequenceAspergillus fumigatusfungibiology.organism_classificationArtificial Gene FusionLuminescent ProteinsInfectious DiseasesParasitologyFungal and Parasitic InfectionsInfection and Immunity
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Biosynthesis of fungal melanins and their importance for human pathogenic fungi

2003

For more than 40 years fungi have been known to produce pigments known as melanins. Predominantly these have been dihydroxyphenylalanine (DOPA)-melanin and dihydroxynaphthalene (DHN)-melanin. The biochemical and genetical analysis of the biosynthesis pathways have led to the identification of the genes and corresponding enzymes of the pathways. Only recently have both these types of melanin been linked to virulence in some human pathogenic and phytopathogenic fungi. The absence of melanin in human pathogenic and phytopathogenic fungi often leads to a decrease in virulence. In phytopathogenic fungi such as Magnaporthe grisea and Colletotrichum lagenarium, besides other possible functions in …

VirulenceNaphtholsMicrobiologyAspergillus fumigatusMicrobiologyMelaninLevodopachemistry.chemical_compoundBiosynthesisGeneticsSporothrix schenckiiMagnaporthe griseaHumansCryptococcus neoformansMelaninsAppressoriumbiologyVirulenceintegumentary systemfungiFungibiology.organism_classificationchemistryCryptococcus neoformanssense organsSignal Transduction
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Discovery of an Extended Austinoid Biosynthetic Pathway in Aspergillus calidoustus

2017

Filamentous fungi produce a wide range of natural products that are commonly used in various industrial contexts (e.g., pharmaceuticals and insecticides). Meroterpenoids are natural products of interest because of their various biological activities. Among the meroterpenoids, there is a group of insecticidal compounds known as the austinoids. These compounds have also been studied because of their intriguing spiro-lactone ring formation along with various modifications. Here, we present an extension of the original austinol/dehydroaustinol biosynthesis pathway from Aspergillus nidulans in the recently identified filamentous fungus Aspergillus calidoustus. Besides the discovery and elucidati…

InsecticidesGenes Fungal010402 general chemistry01 natural sciencesBiochemistryAspergillus nidulansMicrobiologyTerpenechemistry.chemical_compoundBiosynthesisAspergillus nidulansPolyketide synthaseGeneAspergillusAspergillus calidoustusbiologyTerpenes010405 organic chemistryGeneral Medicinebiology.organism_classificationBiosynthetic Pathways0104 chemical sciencesAspergilluschemistryBiochemistryPolyketidesbiology.proteinMolecular MedicineDimerizationPolyketide SynthasesMetabolic Networks and PathwaysBiosynthetic genesACS Chemical Biology
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Isolation and characterization of a pigmentless-conidium mutant of Aspergillus fumigatus with altered conidial surface and reduced virulence.

1997

Aspergillus fumigatus is an important pathogen of immunocompromised hosts, causing pneumonia and invasive disseminated disease with high mortality. The factors contributing to the predominance of A. fumigatus as an opportunistic pathogen are largely unknown. Since the survival of conidia in the host is a prerequisite for establishing disease, we have been attempting to identify factors which are associated with conidia and, simultaneously, important for infection. Therefore, an A. fumigatus mutant strain (white [W]) lacking conidial pigmentation was isolated. Scanning electron microscopy revealed that conidia of the W mutant also differed in their surface morphology from those of the wild t…

ImmunologyMutantGenes FungalVirulenceMicrobiologyMonocytesAspergillus fumigatusMicrobiologyConidiumMiceAnimalsHumansskin and connective tissue diseasesPathogenbiologyVirulenceAspergillus fumigatusfungiFungal geneticsWild typeFungi imperfectibiology.organism_classificationInfectious DiseasesMutationParasitologyResearch Article
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