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Featured researches published by Christian Rank.


Journal of Natural Products | 2011

Dereplication of Microbial Natural Products by LC-DAD-TOFMS

Kristian Fog Nielsen; Maria Månsson; Christian Rank; Jens Christian Frisvad; Thomas Ostenfeld Larsen

Dereplication, the rapid identification of known compounds present in a mixture, is crucial to the fast discovery of novel natural products. Determining the elemental composition of compounds in mixtures and tentatively identifying natural products using MS/MS and UV/vis spectra is becoming easier with advances in analytical equipment and better compound databases. Here we demonstrate the use of LC-UV/vis-MS-based dereplication using data from UV/vis diode array detection and ESI+/ESI- time-of-flight MS for assignment of 719 microbial natural product and mycotoxin reference standards. ESI+ was the most versatile ionization method, detecting 93% of the compounds, although with 12% ionizing poorly. Using ESI+ alone, 56.1% of the compounds could be unambiguously assigned based on characteristic patterns of multiple adduct ions. Using ESI-, 36.4% of the compounds could have their molecular mass assigned unambiguously using multiple adduct ions, while a further 41% of the compounds were detected only as [M - H]-. The most reliable interpretations of conflicting ESI+ and ESI- data on a chromatographic peak were from the ionization polarity with the most intense ionization. Poor ionization was most common with small molecules (<200 Da). In ESI-, these were often polar and basic, while in ESI+ they were small aromatic acids or anthraquinones. No single ion-source settings could be applied over a m/z 60-2000 range. However, continuous switching among three settings (e.g., for 0.5 s each) during the chromatographic run allowed MS of both small labile molecules and large peptides, and pseudo MS/MS data on labile molecules since the settings for large molecules often induce fragmentation into small molecules.


Medical Mycology | 2009

Metabolomics of Aspergillus fumigatus

Jens Christian Frisvad; Christian Rank; Kristian Fog Nielsen; Thomas Ostenfeld Larsen

Aspergillus fumigatus is the most important species in Aspergillus causing infective lung diseases. This species has been reported to produce a large number of extrolites, including secondary metabolites, acids, and proteins such as hydrophobins and extracellular enzymes. At least 226 potentially bioactive secondary metabolites have been reported from A. fumigatus that can be ordered into 24 biosynthetic families. Of these families we have detected representatives from the following families of secondary metabolites: fumigatins, fumigaclavines, fumiquinazolines, trypacidin and monomethylsulochrin, fumagillins, gliotoxins, pseurotins, chloroanthraquinones, fumitremorgins, verruculogen, helvolic acids, and pyripyropenes by HPLC with diode array detection and mass spectrometric detection. There is still doubt whether A. fumigatus can produce tryptoquivalins, but all isolates produce the related fumiquinazolines. We also tentatively detected sphingofungins in A. fumigatus Af293 and in an isolate of A. lentulus. The sphingofungins may have a similar role as the toxic fumonisins, found in A. niger. A further number of mycotoxins, including ochratoxin A, and other secondary metabolites have been reported from A. fumigatus, but in those cases either the fungus or its metabolite appear to be misidentified.


Fems Microbiology Letters | 2011

A genome-wide polyketide synthase deletion library uncovers novel genetic links to polyketides and meroterpenoids in Aspergillus nidulans

Michael Lynge Nielsen; Jakob Blæsbjerg Nielsen; Christian Rank; Marie Louise Klejnstrup; Dorte Koefoed Holm; Katrine Husted Brogaard; Bjarne Gram Hansen; Jens Christian Frisvad; Thomas Ostenfeld Larsen; Uffe Hasbro Mortensen

Fungi possess an advanced secondary metabolism that is regulated and coordinated in a complex manner depending on environmental challenges. To understand this complexity, a holistic approach is necessary. We initiated such an analysis in the important model fungus Aspergillus nidulans by systematically deleting all 32 individual genes encoding polyketide synthases. Wild-type and all mutant strains were challenged on different complex media to provoke induction of the secondary metabolism. Screening of the mutant library revealed direct genetic links to two austinol meroterpenoids and expanded the current understanding of the biosynthetic pathways leading to arugosins and violaceols. We expect that the library will be an important resource towards a systemic understanding of polyketide production in A. nidulans.


Fungal Biology | 2011

Distribution of sterigmatocystin in filamentous fungi

Christian Rank; Kristian Fog Nielsen; Thomas Ostenfeld Larsen; János Varga; R.A. Samson; Jens Christian Frisvad

During the last 50y, the carcinogenic mycotoxin sterigmatocystin (ST) has been reported in several phylogenetically and phenotypically different genera: Aschersonia, Aspergillus, Bipolaris, Botryotrichum, Chaetomium, Emericella, Eurotium, Farrowia, Fusarium, Humicola, Moelleriella, Monocillium and Podospora. We have reexamined all available strains of the original producers, in addition to ex type and further strains of each species reported to produce ST and the biosynthetically derived aflatoxins. We also screened strains of all available species in Penicillium and Aspergillus for ST and aflatoxin. Six new ST producing fungi were discovered: Aspergillus asperescens, Aspergillus aureolatus, Aspergillus eburneocremeus, Aspergillus protuberus, Aspergillus tardus, and Penicillium inflatum and one new aflatoxin producer: Aspergillus togoensis (=Stilbothamnium togoense). ST was confirmed in 23 Emericella, four Aspergillus, five Chaetomium, one Botryotrichum and one Humicola species grown on a selection of secondary metabolite inducing media, and using multiple detection methods: HPLC-UV/Vis DAD, - HRMS and - MS/MS. The immediate precursor for aflatoxin, O-methylsterigmatocystin was found in Chaetomium cellulolyticum, Chaetomium longicolleum, Chaetomium malaysiense and Chaetomium virescens, but aflatoxin was not detected from any Chaetomium species. In all 55 species, representing more than 11 clades throughout the Pezizomycotina, can be reliably claimed to be ST producers and 13 of these can also produce aflatoxins. It is not known yet whether the ST/aflatoxin pathway has been developed independently 11 times, or is the result of partial horizontal gene transfer.


Metabolites | 2012

Comparative Chemistry of Aspergillus oryzae (RIB40) and A. flavus (NRRL 3357)

Christian Rank; Marie Louise Klejnstrup; Lene Maj Petersen; Sara Kildgaard; Jens Christian Frisvad; Charlotte Held Gotfredsen; Thomas Ostenfeld Larsen

Aspergillus oryzae and A. flavus are important species in industrial biotechnology and food safety and have been some of the first aspergilli to be fully genome sequenced. Bioinformatic analysis has revealed 99.5% gene homology between the two species pointing towards a large coherence in the secondary metabolite production. In this study we report on the first comparison of secondary metabolite production between the full genome sequenced strains of A. oryzae (RIB40) and A. flavus (NRRL 3357). Surprisingly, the overall chemical profiles of the two strains were mostly very different across 15 growth conditions. Contrary to previous studies we found the aflatrem precursor 13-desoxypaxilline to be a major metabolite from A. oryzae under certain growth conditions. For the first time, we additionally report A. oryzae to produce parasiticolide A and two new analogues hereof, along with four new alkaloids related to the A. flavus metabolites ditryptophenalines and miyakamides. Generally the secondary metabolite capability of A. oryzae presents several novel end products likely to result from the domestication process from A. flavus.


Organic Letters | 2008

Novofumigatonin, a new orthoester meroterpenoid from Aspergillus novofumigatus.

Christian Rank; Richard Kerry Phipps; Pernille Harris; Peter Fristrup; Thomas Ostenfeld Larsen; Charlotte Held Gotfredsen

Novofumigatonin (1), a new metabolite, has been isolated from Aspergillus novofumigatus. The structure and relative stereochemistry were determined from HR ESI MS, one- and two-dimensional NMR, and single-crystal X-ray analysis. The absolute configuration was assigned using vibrational circular dichroism in combination with density functional calculations.


Weed Research | 2004

Cytotoxic constituents of Alectra and Striga species

Christian Rank; Lars Skovgaard Rasmussen; Søren Rosendal Jensen; Simon Pierce; Malcolm C. Press; Julie D. Scholes


Tetrahedron Letters | 2006

epi-aszonalenins A, B, and C from Aspergillus novofumigatus

Christian Rank; Richard Kerry Phipps; Pernille Harris; Jens Christian Frisvad; Charlotte Held Gotfredsen; Thomas Ostenfeld Larsen


Archive | 2010

Functional systems biology of Aspergillus

Christian Rank; Thomas Ostenfeld Larsen; Jens Christian Frisvad


Biochemical Systematics and Ecology | 2006

Transfer of iridoid glucosides from host plant Galium verum to hemiparasitic Euphrasia stricta

Lars Skovgaard Rasmussen; Christian Rank; Søren Rosendal Jensen

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Thomas Ostenfeld Larsen

Technical University of Denmark

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Jens Christian Frisvad

Technical University of Denmark

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Marie Louise Klejnstrup

Technical University of Denmark

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Jakob Blæsbjerg Nielsen

Technical University of Denmark

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Uffe Hasbro Mortensen

Technical University of Denmark

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Dorte Koefoed Holm

Technical University of Denmark

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Kristian Fog Nielsen

Technical University of Denmark

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Michael Lynge Nielsen

Technical University of Denmark

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Bjarne Gram Hansen

Technical University of Denmark

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