
Prof. Dr. Axel A. Brakhage
Direktorat · Direktor Molekulare und Angewandte Mikrobiologie · Abteilungsleiter
Telefon: +49 3641 532-1001 Telefax: +49 3641 532-0802 E-Mail: axel.brakhage@leibniz-hki.de
- Infektionsbiologie von human-pathogenen Pilzen
- Molekulare Biotechnologie/Synthetische Biotechnologie mikrobieller Wirkstoffe
- Mikrobielle Kommunikation
- Eukaryotische Genregulation/Transkriptionsfaktoren
Wissenschaftlicher Werdegang
seit 2005 | Wissenschaftlicher Direktor, Leibniz Institut für Naturstoff-Forschung und Infektionsbiologie-Hans-Knöll-Institut (HKI) Jena |
seit 2005 | Abteilungsleiter Molekulare und Angewandte Mikrobiologie, HKI Jena |
seit 2004 | Professor (C4/W3) und Lehrstuhl für Mikrobiologie und Molekularbiologie, Institut für Mikrobiologie, FSU Jena |
2001-2004 | Professor (C4) und Lehrstuhl für Mikrobiologie, Leibniz Universität Hannover |
1998-2001 | Professor (C3) für Mikrobiologie, Technische Universität Darmstadt |
1996 | Habilitation in Mikrobiologie, Ludwig-Maximilians-Universität München |
1992-1998 | Assistent(C1), Institut für Genetik und Mikrobiologie, Ludwig-Maximilians-Universität München |
1990-1992 | Wiss. Mitarbeiter, The University of Sheffield, UK, gefördert durch ein Postdoktoranden-Stipendium der DFG |
1989-1990 | Gruppenleiter, Biotechnologie, BASF AG, Ludwigshafen |
1989 | Dr. rer. nat. in Mikrobiologie, „summa cum laude“ Universität Münster und Institut de Biologie Physico-Chimique (IBPC) Paris |
1985 | Studium Biologie/Chemie, Diplom in Biologie an der Westfälischen Wilhelms-Universität Münster |
Auszeichnungen · Ämter · wissenschaftliche Aktivitäten
seit 2020 | Vizepräsident der DFG |
seit 2020 | Obmann der Sektion 13 "Mikrobiologie und Immunologie" und Senator in der Nationalen Akademie der Wissenschaften Leopoldina |
seit 2019 | Sprecher des Exzellenzclusters "Balance of the Microverse" |
seit 2019 | Mitglied Stiftungsrat der Stiftung Regensburger Centrum für Interventionelle Immunologie (RCI), Regensburg |
seit 2019 | Mitglied des Wiss. Beirats des Heinrich-Pette Instituts (HPI), Hamburg |
seit 2018 | Mitglied des Wiss. Beirats des Interdisziplinären Zentrums für Klinische Forschung (IZKF), Münster |
seit 2017 | Mitglied im Steering Committee DZIF/TTU |
seit 2017 | gewähltes Mitglied American Academy of Microbiology |
seit 2017 | Mitglied des Wiss. Beirats der Robert-Koch-Stiftung (RKS), Berlin |
seit 2017 | Mitglied des Wiss. Beirats des MRC Medical Mycology Centre, Exeter, UK |
seit 2016 | Mitglied im Clusterboard der RIS3 Thüringen |
seit 2016 | Mitglied des Wiss. Beirats des Max-Planck-Instituts für Infektionsbiologie (MPIIB), Berlin |
seit 2016 | Sprecher des Leibniz Research Clusters “Biotechnologie 2020+“ |
seit 2015 | gewähltes Mitglied European Academy of Microbiology |
seit 2015 | Ehrenmitgliedschaft Deutschsprachige Mykologische Gesellschaft (DMykG) |
2014 | Haupt-Forschungspreis Deutsche Gesellschaft für Hygiene + Mikrobiologie (DGHM) |
seit 2013 | Sprecher des SFB/Transregio 124 FungiNet (DFG) |
seit 2013 | stellv. Sprecher des Leibniz-Forschungsverbundes Wirkstoffe und Biotechnologie |
seit 2013 | Vorstandsmitglied des Forschungscampus “InfectoGnostics” (BMBF) |
seit 2012 | Sprecher “InfectControl 2020- Neue Antiinfektionsstrategien-Wissenschaft • Gesellschaft • Wirtschaft” im BMBF-Programm “Zwanzig 20-Partnerschaft für Innovation” |
2012-2016 | Sprecher des DFG-Fachkollegiums 204 Mikrobiologie, Immunologie, Virologie |
2010-2012 | Vorstandsmitglied des Integrierten Forschungs- und Behandlungszentrums “Center for Sepsis Control and Care” (CSCC) am Universitätsklinikum Jena |
2010-2016 | Sprecher (u. Präsidiumsbeauftragter) des Leibniz Research Clusters “Biotechnologie 2020+“ |
seit 2010 | Mitglied des Wiss. Beirats des Helmholtz-Zentrums für Infektionsforschung (HZI), Braunschweig |
2010-2018 | Mitglied des Wiss. Beirats des Helmholtz-Instituts für Pharmazeutische Wissenschaften (HIPS), Saarbrücken |
2010-2020 | Mitglied des Wiss. Beirats des Forschungszentrums Borstel, Borstel, stellv. Vorsitzender |
2010-2017 | Mitglied des Wiss. Beirats des Leibniz-Instituts für Pflanzenbiochemie (IPB), Halle |
2009-2017 | Aufsichtsrat Leibniz-Institut DSMZ-Deutsche Sammlung von Mikroorganismen und Zellkulturen (DSMZ), Braunschweig |
2009-2016 | Mitglied des Wiss. Beirats des Zentrums für Infektionsforschung (ZINF), Würzburg |
2009-2011 | Präsident der Vereinigung für Allgemeine und Angewandte Mikrobiologie |
2008-2019 | Mitglied des Universitätsrats (Wiederbestellung 2011 + 2015) der Friedrich-Schiller-Universität Jena |
2008-2016 | Mitglied des DFG-Fachkollegiums 204 Mikrobiologie, Immunologie, Virologie |
2008 | gewähltes Mitglied der Nationalen Akademie der Wissenschaften, Leopoldina |
2007-2016 | Vertrauensperson für wiss. Fehlverhalten der FSU Jena |
seit 2007 | Sprecher der Exzellenzgraduiertenschule „Jena School for Microbial Communication” |
2006-2008 | Sprecher der Graduiertenschule "International Leibniz Research School (ILRS) for microbial and biomolecular interactions“ |
2006 | Heinz-Seeliger Preis für Infektionsbiologie |
seit 2005 | Wiss. Beirat "Goettinger Center for Molecular Bio/Sciences (GZMB)", Georg-August-Universität Göttingen |
seit 2005 | Mitglied des Fakultätsrats der Fakultät für Biowissenschaften, FSU Jena |
2004-2010 | Sprecher des DFG Schwerpunktprogramms 1160 "Kolonisation und Infektion durch human-pathogene Pilze" |
2003-2010 | Wiss. Beirat „Center for Microbial Biotechnology“ DTU Kopenhagen, Dänemark |
2003-2009 | Mitglied im Programmkomitee des DFG Schwerpunktprogramms 1152 "Evolution of Metabolic Diversity" |
2003-2004 | Dekan Fachbereich Biologie, Leibniz-Universität Hannover |
2002-2006 2009-2020 |
Mitglied Wiss. Beirat Interdisziplinäres Zentrum für Klinische Forschung (IZKF), Würzburg |
seit 1998 | Editor verschiedener Zeitschriften |
seit 1995 | Principal investigator in EU Projekten |
(2020) Caspofungin functionalized polymethacrylates with antifungal properties. Biomacromolecules 21(6), 2104-2115. Details PubMed
(2020) Dynamic surface proteomes of allergenic fungal conidia. J Proteome Res 19(5), 2092-2104. Details PubMed
(2020) Carbon catabolite repression in filamentous fungi is regulated by phosphorylation of the transcription factor CreA. mBio 12(1), e03146-20. Details PubMed PDF
(2020) New avenues towards drug discovery in fungi. In: The Mycota 2, pp. 267-295. Springer, Cham. ISBN: 978-3-030-49923. Details
(2020) The pheromone module SteC-MkkB-MpkB-SteD-HamE regulates development, stress responses and secondary metabolism in Aspergillus fumigatus. Front Microbiol 11, 811. Details PubMed Open Access PDF
(2020) The fungal CCAAT-binding complex and HapX display highly variable but evolutionary conserved synergetic promoter-specific DNA recognition. Nucleic Acids Res 48(7), 3567-3590. Details PubMed Open Access PDF
(2020) Phagosomal removal of fungal melanin reprograms macrophage metabolism to promote antifungal immunity. Nat Commun 11(1), 2282. Details PubMed Open Access PDF
(2020) Functional surface proteomic profiling reveals the host heat-shock protein A8 as a mediator of Lichtheimia corymbifera recognition by murine alveolar macrophages. Environ Microbiol 22(9), 3722-3740. Details PubMed Open Access
(2020) Structural basis of HapEP88L based antifungal triazole resistance in Aspergillus fumigatus. Life Sci Alliance 3(7), e202000729. Details PubMed Open Access PDF
(2020) Biotinylated surfome profiling identifies potential biomarkers for diagnosis and therapy of Aspergillus fumigatus infection. mSphere 5(4), e00535-20. Details PubMed Open Access PDF
(2020) Lichen-like association of Chlamydomonas reinhardtii and Aspergillus nidulans protects algal cells from bacteria. ISME J 14(11), 2794-2805. Details PubMed Open Access
(2020) Warum Mikroorganismen Naturstoffe produzieren. BIOspektrum 26, 731-733. Details Open Access
(2020) Fungal iron homeostasis with a focus on Aspergillus fumigatus. Biochim Biophys Acta Mol Cell Res 1868(1), 118885. (Review) Details PubMed Open Access PDF
(2020) Ahr1 and Tup1 contribute to the transcriptional control of virulence-associated genes in Candida albicans. mBio 11(2), e00206-20. Details PubMed Open Access PDF
(2020) N-heterocyclization in gliotoxin biosynthesis is catalyzed by a distinct cytochrome P450 monooxygenase. Chembiochem [Epub ahead of print] Details PubMed PDF
(2020) Flotillin-dependent lipid-raft microdomains are required for functional phagolysosomes against fungal infections. Cell Rep 32(7), 108017. Details PubMed PDF
(2020) The domestic pig as human-relevant large animal model to studyadaptive antifungal immune responses against airborne Aspergillus fumigatus. EurJ Immunol 50(11), 1712-1728. Details PubMed Open Access PDF
(2020) Human neutrophils produce antifungal extracellular vesicles against Aspergillus fumigatus. mBio 11(2), e00596-20. Details PubMed Open Access PDF Supplement
(2020) Genome sequence of Escherichia coli KI683, Isolated from a urosepsis patient. Microbiol Resour Announc 9(9), e01297-19. Details PubMed Open Access PDF
(2020) Targeted induction of a silent fungal gene cluster encoding the bacteria-specific germination inhibitor fumigermin. eLife 9, e52541. Details PubMed Open Access PDF
(2020) The role of RodA-conserved cysteine residues in the Aspergillus fumigatus conidial surface organization. J Fungi 6(3), E151. Details PubMed Open Access PDF
(2020) Towards Raman spectroscopy of urine as screening tool. J Biophotonics 13(1), e201900143. Details PubMed Open Access PDF
(2019) Human anti-fungal Th17 immunity and pathology rely on cross-reactivity against Candida albicans. Cell 176(6), 1340-1355. Details PubMed Open Access PDF
(2019) Recreation of in-host acquired single nucleotide polymorphisms by CRISPR-Cas9 reveals an uncharacterised gene playing a role in Aspergillus fumigatus azole resistance via a non-cyp51A mediated resistance mechanism. Fungal Genet Biol 130, 98-106. Details PubMed Open Access PDF
(2019) Conidial surface proteins at the interface of fungal infections. PLOS Pathog 15(9), e1007939. (Review) Details PubMed Open Access PDF
(2019) Gleichgewicht des Mikroversums. BIOspektrum 25(2), 229. (Review) Details PDF
(2019) Enolase from Aspergillus fumigatus is a moonlighting and immune evasion protein that binds the human plasma complement proteins factor H, FHL-1, C4BP, and plasminogen. Front Immunol 10, 2573. Details PubMed Open Access PDF
(2019) Fast and quantitative evaluation of human leukocyte interaction with Aspergillus fumigatus conidia by flow cytometry. Cytometry A 95(3), 332-338. Details PubMed Open Access PDF
(2019) Gliotoxin from Aspergillus fumigatus abrogates leukotriene B4 formation through inhibition of leukotriene A4 hydrolase. Cell Chem Biol 26(4), 524-534. Details PubMed Open Access PDF
(2019) Mitogen-activated protein kinase cross-talk interaction modulates the production of melanins in Aspergillus fumigatus. mBio 10(2), e00215-19. Details PubMed Open Access PDF
(2019) The monothiol glutaredoxin GrxD is essential for sensing iron starvation in Aspergillus fumigatus. PLOS Genetics 15(9), e1008379. Details PubMed Open Access PDF
(2019) Yeast two-hybrid screening reveals a dual function for the histone acetyltransferase GcnE by controlling glutamine synthesis and development in Aspergillus fumigatus. Curr Genet 65(2), 523-538. Details PubMed Open Access PDF
(2019) One step closer to precision medicine for infectious diseases. Lancet Infect Dis 19(6), 564-565. (Review) Details PubMed
(2019) Stress-induced changes in the lipid microenvironment of β-(1,3)-d-glucan synthase cause clinically important Echinocandin resistance in Aspergillus fumigatus. mBio 10(3), e00779-19. Details PubMed Open Access PDF
(2019) Redox proteomic analysis reveals oxidative modifications of proteins by increased levels of intracellular reactive oxygen species during hypoxia adaptation of Aspergillus fumigatus. Proteomics 19(5), e1800339. Details PubMed
(2019) Microbial co-cultures as source of novel drugs for infections. In: Elsevier Science (ed.) Comprehensive Natural Products III: Chemistry and Biology 3, pp. Chapter 30015. Elsevier. Details
(2019) Artificial microbial arenas: Materials for observing and manipulating microbial consortia. Adv Mater 31(24), e1900284. Details PubMed Open Access PDF
(2019) High throughput gene replacement in Aspergillus fumigatus. Curr Protoc Microbiol 54(1), e88. Details PubMed Open Access PDF
(2018) Synergistic activity of co-secreted natural products from amoebae-associated bacteria. Proc Natl Acad Sci USA 115(15), 3758-3763. Details PubMed Open Access
(2018) Module-detection approaches for the integration of multilevel omics data highlight the comprehensive response of Aspergillus fumigatus to caspofungin. BMC Syst Biol 12(1), 88. Details PubMed Open Access
(2018) Aspf2 from Aspergillus fumigatus recruits human immune regulators for immune evasion and cell damage. Front Immunol 9, 1635. Details PubMed Open Access PDF Supplement
(2018) Methodologies for in vitro and in vivo evaluation of efficacy of antifungal and antibiofilm agents and surface coatings against fungal biofilms. Microb Cell 5(7), 300-326. (Review) Details PubMed Open Access
(2018) Chromatin mapping identifies BasR, a key regulator of bacteria-triggered production of fungal secondary metabolites. eLife 7, e40969. Details PubMed Open Access
(2018) Facile assembly and fluorescence-based screening method for heterologous expression of biosynthetic pathways in fungi. Metab Eng 48, 44-51. Details PubMed Open Access
(2018) Calcium sequestration by fungal melanin inhibits calcium-calmodulin signalling to prevent LC3-associated phagocytosis. Nat Microbiol 3(7), 791-803. Details PubMed
(2018) The Zn2Cys6-type transcription factor LeuB cross-links regulation of leucine biosynthesis and iron acquisition in Aspergillus fumigatus. PLOS Genet 14(10), e1007762. Details PubMed Open Access
(2018) Microbial interactions trigger the production of antibiotics. Curr Opin Microbiol 45, 117-123. (Review) Details PubMed
(2018) Generation of an arginine-tRNA-adapted Saccharomyces cerevisiae strain for effective heterologous protein expression. Curr Genet 64(3), 589-598. Details PubMed Open Access PDF
(2018) Mutations in EEA1 are associated with allergic bronchopulmonary aspergillosis and affect phagocytosis of Aspergillus fumigatus by human macrophages. PLOS One 13(3), e0185706. Details PubMed Open Access PDF
(2018) Reconstitution of enzymatic carbon-sulfur bond formation reveals detoxification-like strategy in fungal toxin biosynthesis. ACS Chem Biol 13(9), 2508-2512. Details PubMed
(2018) Proteomics of Aspergillus fumigatus conidia-containing phagolysosomes identifies processes governing immune evasion. Mol Cell Proteomics 17(6), 1084-1096. Details PubMed Open Access PDF
(2018) Recognition of DHN-melanin by a C-type lectin receptor is required for immunity to Aspergillus. Nature 555(7696), 382-386. Details PubMed Open Access PDF
(2018) β-1,3-glucan-lacking Aspergillus fumigatus mediates an efficient antifungal immune response by activating complement and dendritic cells. Virulence 10(1), 957-969. Details PubMed Open Access PDF
(2018) Arabidopsis thaliana responds to colonisation of Piriformospora indica by secretion of symbiosis-specific proteins. PLOS One 13(12), e0209658. Details PubMed Open Access PDF
(2018) Proteome analysis reveals the conidial surface protein CcpA essential for virulence of the pathogenic fungus Aspergillus fumigatus. mBio 9(5), e01557-18. Details PubMed Open Access PDF
(2018) UV-Raman spectroscopic identification of fungal spores important for respiratory diseases. Anal Chem 90(15), 8912-8918. Details PubMed
(2017) Direct Binding of the pH-Regulated Protein 1 (Pra1) from Candida albicans Inhibits Cytokine Secretion by Mouse CD4(+) T Cells. Front Microbiol 8, 844. Details PubMed
(2017) Comparative genomics reveals high biological diversity and specific adaptations in the industrially and medically important fungal genus Aspergillus. Genome Biol 18(1), 28. Details PubMed Open Access
(2017) The CCAAT-binding complex (CBC) in Aspergillus species. Biochim Biophys Acta 1860(5), 560-570. (Review) Details PubMed
(2017) A nonredundant phosphopantetheinyl transferase, PptA, is a novel antifungal target that directs secondary metabolite, siderophore, and lysine biosynthesis in Aspergillus fumigatus and is critical for pathogenicity. MBio 8(4), e01504-e01516. Details PubMed
(2017) Arylmethylamino steroids as antiparasitic agents. Nat Commun 8, 14478. Details PubMed
(2017) Aspergillus fumigatus protein phosphatase PpzA is involved in iron assimilation, secondary metabolite production, and virulence. Cell Microbiol 19(12), Details PubMed
(2017) Gliotoxin Biosynthesis: Structure, Mechanism, and Metal Promiscuity of Carboxypeptidase GliJ. ACS Chem Biol 12(7), 1874-1882. Details PubMed
(2017) Rewiring of the Austinoid Biosynthetic Pathway in Filamentous Fungi. ACS Chem Biol 12(12), 2927-2933. Details PubMed
(2017) Lipid signaling via Pkh1/2 regulates fungal CO2 sensing through the kinase Sch9. mBio 8(1), e02211-16. Details PubMed
(2017) Quantitative Analysis of Proteome Modulations in Alveolar Epithelial Type II Cells in Response to Pulmonary Aspergillus fumigatus Infection. Mol Cell Proteomics 16(12), 2184-2198. Details PubMed
(2017) Induction of Mitochondrial Reactive Oxygen Species Production by Itraconazole, Terbinafine, and Amphotericin B as a Mode of Action against Aspergillus fumigatus. Antimicrob Agents Chemother 61(11), e00978-17. Details PubMed
(2017) Phenotypic and Proteomic Analysis of the Aspergillus fumigatus ΔPrtT, ΔXprG and ΔXprG/ΔPrtT Protease-Deficient Mutants. Front Microbiol 8, 2490. Details PubMed
(2017) Discovery of an Extended Austinoid Biosynthetic Pathway in Aspergillus calidoustus. ACS Chem Biol 12(5), 1227-1234. Details PubMed Supplement
(2017) Functional Reconstitution of a Fungal Natural Product Gene Cluster by Advanced Genome Editing. ACS Synth Biol 6(1), 62-68. Details PubMed
(2016) Aspergillus cell wall melanin blocks LC3-associated phagocytosis to promote pathogenicity. Cell Host Microbe 19(1), 79-90. Details PubMed
(2016) Plant-like biosynthesis of isoquinoline alkaloids in Aspergillus fumigatus. Nat Chem Biol 12, 419-424. Details PubMed
(2016) Regulatory T Cell Specificity Directs Tolerance versus Allergy against Aeroantigens in Humans. Cell 167(4), 1067-1078.e16. Details PubMed
(2016) Mitogen activated protein kinases SakA (HOG1) and MpkC collaborate for Aspergillus fumigatus virulence. Mol Microbiol 100(5), 841-859. Details PubMed
(2016) Melanin targets LC3-associated phagocytosis (LAP): A novel pathogenetic mechanism in fungal disease. Autophagy 12(5), 888-889. (Review) Details PubMed
(2016) Awakening of Fungal Secondary Metabolite Gene Clusters In: Schmoll M., Dattenböck C. (eds.) Gene Expression Systems in Fungi: Advancements and Applications (Part II), pp. 253-273. Springer, Cham. ISBN: 978-3-319-27949. (Review) Details
(2016) Sterol Biosynthesis and Azole Tolerance Is Governed by the Opposing Actions of SrbA and the CCAAT Binding Complex. PLOS Pathog 12(7), e1005775. Details PubMed
(2016) The crystal structure of peroxiredoxin Asp f3 provides mechanistic insight into oxidative stress resistance and virulence of Aspergillus fumigatus. Sci Rep 6, 33396. Details PubMed Open Access
(2016) Draft genome sequences of fungus Aspergillus calidoustus. Genome Announc 4(2), e00102-16. Details PubMed
(2016) SCF Ubiquitin Ligase F-box Protein Fbx15 Controls Nuclear Co-repressor Localization, Stress Response and Virulence of the Human Pathogen Aspergillus fumigatus PLOS Pathog 12(9), e1005899. Details PubMed Open Access PDF
(2016) An Iterative O-Methyltransferase Catalyzes 1,11-Dimethylation of Aspergillus fumigatus Fumaric Acid Amides. ChemBioChem 17, 1813-1817. Details PubMed
(2016) Immunoproteomics of Aspergillus for the development of biomarkers and immunotherapies. Proteomics Clin Appl 10(9-10), 910-921. (Review) Details PubMed
(2016) The transcriptional regulators SteA and StuA contribute to keratin degradation and sexual reproduction of the dermatophyte Arthroderma benhamiae. Curr Genet 63(1), 103-116. Details PubMed
(2016) HapX Mediates Iron Homeostasis in the Pathogenic Dermatophyte Arthroderma benhamiae but Is Dispensable for Virulence. PLOS ONE 11(3), e0150701. Details PubMed
(2016) The hypoxia-induced dehydrogenase HorA is required for coenzyme Q10 biosynthesis, azole sensitivity and virulence of Aspergillus fumigatus Mol Microbiol 101(1), 92-108. Details PubMed
(2016) Immunoproteomic analysis of antibody responses to extracellular proteins of Candida albicans revealed the importance of glycosylation for antigen recognition. J Proteome Res 15(8), 2394-2406. Details PubMed
(2016) Regulation and Role of Fungal Secondary Metabolites. Annu Rev Genet 50, 371-392. (Review) Details PubMed
(2016) Current challenges of research on filamentous fungi in relation to human welfare and a sustainable bio-economy: a white paper Fungal Biol Biotechnol 3, 6. (Review) Details Open Access
(2016) Hyperspectral imaging using intracellular spies: quantitative real-time measurement of intracellular parameters in vivo during interaction of the pathogenic fungus Aspergillus fumigatus with human monocytes PLOS ONE 11(10), e0163505. Details PubMed
(2016) An Efficient Method To Generate Gene Deletion Mutants of the Rapamycin-Producing Bacterium Streptomyces iranensis HM 35. Appl Environ Microbiol 82(12), 3481-3492. Details PubMed
(2016) Deciphering the counterplay of Aspergillus fumigatus infection and host inflammation by evolutionary games on graphs. Sci Rep 6, 27807. Details PubMed Open Access PDF Supplement
(2016) Gliotoxin- bane or boon? Environ Microbiol 18(4), 1096-1109. (Review) Details PubMed
(2016) Bacteria induce pigment formation in the basidiomycete Serpula lacrymans. Environ Microbiol 18, 5218-5227. Details PubMed
(2016) Proteomic profiling of serological responses to Aspergillus fumigatus antigens in patients with invasive aspergillosis. J Proteome Res 15(5), 1580-1591. Details PubMed
(2016) Identification and characterization of a novel Aspergillus fumigatus rhomboid family putative protease RbdA involved in hypoxia sensing and virulence. Infect Immun 84(6), 1866-1878. Details PubMed
(2016) The Aspergillus fumigatus conidial melanin production is regulated by the bifunctional bHLH DevR and MADS-box RlmA transcription factors. Mol Microbiol 102(2), 321-335. Details PubMed
(2015) Network Modeling Reveals Cross Talk of MAP Kinases during Adaptation to Caspofungin Stress in Aspergillus fumigatus. PLOS One 10(9), e0136932. Details PubMed Open Access
(2015) Clinical-scale isolation of the total Aspergillus fumigatus-reactive T-helper cell repertoire for adoptive transfer. Cytotherapy 17(10), 1396-1405. Details PubMed
(2015) Fungus-specific CD4(+) T cells for rapid identification of invasive pulmonary mold infection. Am J Respir Crit Care Med 191(3), 348-352. Details PubMed
(2015) Comparative proteomics of a tor inducible Aspergillus fumigatus mutant reveals involvement of the Tor kinase in iron regulation. Proteomics 15(13), 2230-2243. Details PubMed
(2015) Reversible Oxidation of a Conserved Methionine in the Nuclear Export Sequence Determines Subcellular Distribution and Activity of the Fungal Nitrate Regulator NirA. PLOS Genet 11(7), e1005297. Details PubMed Open Access
(2015) Interference of Aspergillus fumigatus with the immune response. Semin Immunopathol 37(2), 141-152. (Review) Details PubMed
(2015) Virulence determinants of the human pathogenic fungus Aspergillus fumigatus protect against soil amoeba predation. Environ Microbiol 17(8), 2858-2869. Details PubMed
(2015) Draft Genome Sequence and Gene Annotation of the Entomopathogenic Fungus Verticillium hemipterigenum. Genome Announc 3(1), e01439-14. Details PubMed Open Access
(2015) Draft Genome Sequence of the Fungus Penicillium brasilianum MG11. Genome Announc 3(5), e00724-15. Details PubMed
(2015) Deciphering the combinatorial DNA-binding code of the CCAAT-binding complex and the iron-regulatory basic region leucine zipper (bZIP) transcription factor HapX. J Biol Chem 290(10), 6058-6070. Details PubMed
(2015) Genetic engineering activates biosynthesis of aromatic fumaric acid amides in the human pathogen Aspergillus fumigatus. Appl Environ Microbiol 81, 1594-1600. Details PubMed
(2015) Automated quantification of the phagocytosis of Aspergillus fumigatus conidia by a novel image analysis algorithm. Frontiers in Microbiology 6(549), *authors contributed equally. Details PubMed Open Access
(2015) Transcriptome analysis of cAMP-dependent protein kinase A regulated genes reveals the production of the novel natural compound fumipyrrole by Aspergillus fumigatus Mol Microbiol 96(1), 148-162. Details PubMed
(2015) Identification of the antiphagocytic trypacidin gene cluster in the human-pathogenic fungus Aspergillus fumigatus. Applied Microbiology and Biotechnology 99(23), 10151-10161. Details PubMed
(2015) Synthetic Biology of Fungal Natural Products Front. Microbiol. 6, 775. (Review) Details PubMed Open Access
(2015) Minimum information about a biosynthetic gene cluster. Nat Chem Biol 11, 625-631. Details PubMed Open Access
(2015) Microbial communication leading to the activation of silent fungal secondary metabolite gene clusters. Front Microbiol 6, 299. (Review) Details PubMed
(2015) The Aspergillus fumigatus cell wall integrity signaling pathway: drug target, compensatory pathways, and virulence. Front Microbiol 6, 325. (Review) Details PubMed
(2015) Hitting the caspofungin salvage pathway of human-pathogenic fungi with the novel lasso peptide humidimycin (MDN-0010). Antimicrob Agents Chemother 59(9), 5145-5153. Details PubMed
(2014) Antigen-specific expansion of human regulatory T cells as a major tolerance mechanism against mucosal fungi. Mucosal Immunol 7(4), 916-928. Details PubMed
(2014) Identification of immunogenic antigens from Aspergillus fumigatus by direct multi-parameter characterization of specific conventional and regulatory CD4+ T cells. Journal of Immunology 197(7), 3332-3343. Details PubMed
(2014) Surface structure characterization of Aspergillus fumigatus conidia mutated in the melanin synthesis pathway and their human cellular immune response. Infect Immun 82(8), 3141-3153. Details PubMed
(2014) Bacillus subtilis attachment to Aspergillus niger hyphae results in mutually altered metabolism. Environ Microbiol 17(6), 2099-2113. Details PubMed
(2014) Cytotoxic and antifungal activities of melleolide antibiotics follow dissimilar structure-activity relationships. Phytochemistry 105, 101-108. Details PubMed
(2014) The Janus transcription factor HapX controls fungal adaptation to both iron starvation and iron excess. EMBO J 33(19), 2261-2276. Details PubMed
(2014) Functional genomics to characterize opportunistic pathogens. In: Nowrousian M (ed.) The Mycota 13, pp. 321-347. Springer. ISBN: 9783642452178. Details
(2014) The novel globin protein fungoglobin is involved in low oxygen adaptation of Aspergillus fumigatus. Mol Microbiol 93(3), 539-553. Details PubMed
(2014) Draft genome sequence of Streptomyces iranensis. Genome Announc 2(4), e00616-14. Details PubMed
(2014) Data-driven systems biology of fungal infections. In: Sullivan D, Moran GP (eds.) Human pathogenic Fungi: Molecular biology and pathogenic mechanisms Caister Academic Press, Norfolk, U.K.. ISBN: 978-1-908230-44. Details
(2014) Identification of hypoxia-inducible target genes of Aspergillus fumigatus by transcriptome analysis reveals cellular respiration as important contributor to hypoxic survival. Eukaryot Cell 13(9), 1241-1253. Details PubMed
(2014) Characterisation of the Aspergillus fumigatus detoxification systems for reactive nitrogen intermediates and impact on virulence. Frontiers in Microbiology 5, 469. Details PubMed
(2014) Fungal model systems and the elucidation of pathogenicity determinants. Fungal Genet Biol 70C, 42-67. Details PubMed
(2014) Flavoenzyme-catalyzed formation of disulfide bonds in natural products. Angew Chem Int Ed Engl 53(8), 2221-2224. Details PubMed
(2014) Opposed effects of enzymatic gliotoxin N- and S-methylations. J Am Chem Soc 136(33), 11674-11679. Details PubMed
(2014) Human and plant fungal pathogens: the role of secondary metabolites. PLOS Pathog 10(1), e1003859. (Review) Details PubMed
(2014) Fungal-actinomycete interactions – wakening of silent fungal secondary metabolism gene clusters via interorganismic interactions. In: Osbourn A, Goss RJ, Carter GT (eds.) Natural Products: Discourse, Diversity, and Design pp. 147-158. Wiley-Blackwell. ISBN: 978-1-118-29806. Details
(2014) Gene expansion shapes genome architecture in the human pathogen Lichtheimia corymbifera: an evolutionary genomics analysis in the ancient terrestrial Mucorales (Mucoromycotina). PLOS Genetics 10(8), e1004496. Details PubMed Open Access
(2014) Synthetic biology tools for bioprospecting of natural products in eukaryotes. Chem Biol 21(4), 502-508. Details PubMed
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