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1.
Clin Lab ; 54(9-10): 355-7, 2008.
Article in English | MEDLINE | ID: mdl-19097493

ABSTRACT

Interferences with the Olympus immunoturbidimetric assay for ferritin have been reported because the antibodies used in the immunoassay are derived from rabbits. Rabbits are familiar pets known to be a risk factor for developing heterophilic (or interfering) antibodies. This report shows how the current Olympus Ferritin assay has been improved to eliminate the interference from heterophilic antibodies.


Subject(s)
Antibodies, Heterophile/immunology , Antibody Specificity , Ferritins/blood , Immunoassay/methods , Immunoglobulin Fab Fragments/immunology , Animals , False Positive Reactions , Ferritins/immunology , Humans , Immunoassay/instrumentation , Nephelometry and Turbidimetry/instrumentation , Nephelometry and Turbidimetry/methods , Rabbits , Sensitivity and Specificity
2.
Microbiology (Reading) ; 153(Pt 5): 1297-1306, 2007 May.
Article in English | MEDLINE | ID: mdl-17464044

ABSTRACT

In fungi, nonribosomal peptide synthetases (NRP synthetases) are large multi-functional enzymes containing adenylation, thiolation (or peptidyl carrier protein, PCP) and condensation domains. These enzymes are often encoded within gene clusters. Multiple NRP synthetase ORFs have also been identified in fungi (14 in Aspergillus fumigatus). LeaA, a methyltransferase, is involved in secondary metabolite gene cluster regulation in Aspergillus spp. The NRP synthetases GliP and FtmA respectively direct the biosynthesis of the toxic metabolites gliotoxin and brevianamide F, a precursor of bioactive prenylated alkaloids. The NRP synthetase Pes1 has been shown to mediate resistance to oxidative stress, and in plant-pathogenic ascomycetes (e.g. Cochliobolus heterostrophus) an NRP synthetase, encoded by the NPS6 gene, significantly contributes to virulence and resistance to oxidative stress. Adenylation (A) domains within NRP synthetases govern the specificity of amino acid incorporation into nonribosomally synthesized peptides. To date there have only been limited demonstrations of A domain specificity (e.g. A. fumigatus GliP and in Beauveria bassiana) in fungi. Indeed, only in silico prediction data are available on A domain specificity of NRP synthetases from most fungi. NRP synthetases are activated by 4'-phosphopantetheinylation of serine residues within PCP domains by 4'-phosphopantetheinyl transferases (4'-PPTases). Coenzyme A acts as the 4'-phosphopantetheine donor, and labelled coenzyme A can be used to affinity-label apo-NRP synthetases. Emerging fungal gene disruption and gene cluster expression strategies, allied to proteomic strategies, are poised to facilitate a greater understanding of the coding potential of NRP synthetases in fungi.


Subject(s)
Aspergillus fumigatus/enzymology , Fungi/enzymology , Peptide Biosynthesis, Nucleic Acid-Independent/physiology , Peptide Synthases/genetics , Peptide Synthases/metabolism , Aspergillus fumigatus/genetics , Fungi/genetics , Peptide Biosynthesis, Nucleic Acid-Independent/genetics
3.
FEBS J ; 273(13): 3038-53, 2006 Jul.
Article in English | MEDLINE | ID: mdl-16759234

ABSTRACT

Aspergillus fumigatus is an important human fungal pathogen. The Aspergillus fumigatus genome contains 14 nonribosomal peptide synthetase genes, potentially responsible for generating metabolites that contribute to organismal virulence. Differential expression of the nonribosomal peptide synthetase gene, pes1, in four strains of Aspergillus fumigatus was observed. The pattern of pes1 expression differed from that of a putative siderophore synthetase gene, sidD, and so is unlikely to be involved in iron acquisition. The Pes1 protein (expected molecular mass 698 kDa) was partially purified and identified by immunoreactivity, peptide mass fingerprinting (36% sequence coverage) and MALDI LIFT-TOF/TOF MS (four internal peptides sequenced). A pes1 disruption mutant (delta pes1) of Aspergillus fumigatus strain 293.1 was generated and confirmed by Southern and western analysis, in addition to RT-PCR. The delta pes1 mutant also showed significantly reduced virulence in the Galleria mellonella model system (P < 0.001) and increased sensitivity to oxidative stress (P = 0.002) in culture and during neutrophil-mediated phagocytosis. In addition, the mutant exhibited altered conidial surface morphology and hydrophilicity, compared to Aspergillus fumigatus 293.1. It is concluded that pes1 contributes to improved fungal tolerance against oxidative stress, mediated by the conidial phenotype, during the infection process.


Subject(s)
Aspergillus fumigatus/enzymology , Fungal Proteins/chemistry , Fungal Proteins/physiology , Oxidative Stress , Peptide Synthases/chemistry , Peptide Synthases/physiology , Base Sequence , Cloning, Molecular , Genes, Fungal , Genome, Fungal , Molecular Sequence Data , Phenotype , Reverse Transcriptase Polymerase Chain Reaction , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization , Time Factors
4.
Biochem Biophys Res Commun ; 341(4): 1096-104, 2006 Mar 24.
Article in English | MEDLINE | ID: mdl-16455047

ABSTRACT

Aspergillus fumigatus is a recognised human pathogen, especially in immunocompromised individuals. The availability of the annotated A. fumigatus genome sequence will significantly accelerate our understanding of this organism. However, limited information is available with respect to the A. fumigatus proteome. Here, both a direct proteomic approach (2D-PAGE and MALDI-MS) and a sub-proteomic strategy involving initial glutathione affinity chromatography have been deployed to identify 54 proteins from A. fumigatus primarily involved in energy metabolism and protein biosynthesis. Furthermore, two novel eukaryotic elongation factor proteins (eEF1Bgamma), termed ElfA and B have been identified and phylogenetically confirmed to belong to the eEF1Bgamma class of GST-like proteins. One of these proteins (ElfA) has been purified to homogeneity, identified as a monomeric enzyme (molecular mass=20 kDa; pI=5.9 and 6.5), and found to exhibit glutathione transferase activity specific activities (mean+/-standard deviation, n=3) of 3.13+/-0.27 and 3.43+/-1.0 micromol/min/mg, using CDNB and ethacrynic acid, respectively. Overall, these data highlight the importance of new approaches to dissect the proteome of, and elucidate novel functions within, A. fumigatus.


Subject(s)
Aspergillus fumigatus/chemistry , Fungal Proteins/analysis , Glutathione Transferase/analysis , Peptide Elongation Factor 1/analysis , Peptide Elongation Factors/analysis , Amino Acid Sequence , Chromatography, Affinity/methods , Electrophoresis, Gel, Two-Dimensional , Genome, Fungal , Molecular Sequence Data , Peptide Elongation Factor 1/isolation & purification , Peptide Elongation Factors/isolation & purification , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
5.
FEMS Microbiol Lett ; 248(1): 83-91, 2005 Jul 01.
Article in English | MEDLINE | ID: mdl-15953695

ABSTRACT

Three non-ribosomal peptide synthetase genes, termed sidD, sidC and sidE, have been identified in Aspergillus fumigatus. Gene expression analysis by RT-PCR confirms that expression of both sidD and C was reduced by up to 90% under iron-replete conditions indicative of a likely role in siderophore biosynthesis. SidE expression was less sensitive to iron levels. In addition, two proteins purified from mycelia grown under iron-limiting conditions corresponded to SidD ( approximately 200 kDa) and SidC (496 kDa) as determined by MALDI ToF peptide mass fingerprinting and MALDI LIFT-ToF/ToF. Siderophore synthetases are unique in bacteria and fungi and represent an attractive target for antimicrobial chemotherapy.


Subject(s)
Aspergillus fumigatus/enzymology , Iron/metabolism , Peptide Synthases/metabolism , Siderophores/metabolism , Aspergillus fumigatus/genetics , Aspergillus fumigatus/physiology , Iron/chemistry , Peptide Synthases/genetics , Reverse Transcriptase Polymerase Chain Reaction , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
6.
Fungal Genet Biol ; 42(4): 319-27, 2005 Apr.
Article in English | MEDLINE | ID: mdl-15749051

ABSTRACT

Analysis of the genome of the human pathogen, Aspergillus fumigatus, revealed the presence of several putative glutathione transferase (GST) open reading frames. Three A. fumigatus GST genes, termed gstA, B, and C, were cloned and recombinant proteins expressed in Escherichia coli. Functional analysis of recombinant gstA-C confirms that the enzymes exhibit GST activity and glutathione peroxidase activity. RT-PCR confirmed low basal expression of gstA and gstC which was markedly up-regulated (at least 4x-10x) in the presence of either H2O2 or 1-chloro-2,4-dinitrobenzene (CDNB). GstB expression was only observed in the presence of CDNB. These results demonstrate for the first time the existence of three functional GSTs in A. fumigatus and strongly suggest a role for these enzymes in the response of the organism to both oxidative stress and xenobiotic presence.


Subject(s)
Aspergillus fumigatus/enzymology , Cloning, Molecular , Gene Expression Regulation, Fungal , Glutathione Transferase , Amino Acid Sequence , Aspergillus fumigatus/genetics , Dinitrochlorobenzene/pharmacology , Escherichia coli/enzymology , Escherichia coli/genetics , Fungal Proteins/genetics , Fungal Proteins/metabolism , Glutathione Transferase/chemistry , Glutathione Transferase/genetics , Glutathione Transferase/metabolism , Humans , Hydrogen Peroxide/pharmacology , Molecular Sequence Data , Oxidative Stress , Phylogeny , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Sequence Alignment
7.
Chembiochem ; 6(4): 679-85, 2005 Apr.
Article in English | MEDLINE | ID: mdl-15719355

ABSTRACT

Aspergillus fumigatus is a significant human pathogen. Non-ribosomal peptide (NRP) synthesis is thought to be responsible for a significant proportion of toxin and siderophore production in the organism. Furthermore, it has been shown that 4'-phosphopantetheinylation is required for the activation of key enzymes involved in non-ribosomal peptide synthesis in other species. Here we report the cloning, recombinant expression and functional characterisation of a 4'-phosphopantetheinyl transferase from A. fumigatus and the identification of an atypical NRP synthetase (Afpes1), spanning 14.3 kb. Phylogenetic analysis has shown that the NRP synthetase exhibits greatest identity to NRP synthetases from Metarhizium anisolpiae (PesA) and Alternaria brassicae (AbrePsy1). Northern hybridisation and RT-PCR analysis have confirmed that both genes are expressed in A. fumigatus. A 120 kDa fragment of the A. fumigatus NRP synthetase, containing a putative thiolation domain, was cloned and expressed in the baculovirus expression system. Detection of a 4'-phosphopantetheinylated peptide (SFSAMK) from this protein, by MALDI-TOF mass spectrometric analysis after coincubation of the 4'-phosphopantetheinyl transferase with the recombinant NRP synthetase fragment and acetyl CoA, confirms that it is competent to play a role in NRP synthetase activation in A. fumigatus. The 4'-phosphopantetheinyl transferase also activates, by 4'-phosphopantetheinylation, recombinant alpha-aminoadipate reductase (Lys2p) from Candida albicans, a key enzyme involved in lysine biosynthesis.


Subject(s)
Aspergillus fumigatus/enzymology , Bacterial Proteins/metabolism , Peptide Synthases/metabolism , Transferases (Other Substituted Phosphate Groups)/metabolism , Aldehyde Oxidoreductases/metabolism , Aspergillus fumigatus/genetics , Bacterial Proteins/genetics , Bacterial Proteins/physiology , Candida albicans/enzymology , Candida albicans/genetics , Catalytic Domain/genetics , Enzyme Activation , Gene Expression/genetics , L-Aminoadipate-Semialdehyde Dehydrogenase , Molecular Sequence Data , Peptide Synthases/genetics , Peptide Synthases/physiology , Phylogeny , Recombinant Proteins/chemistry , Recombinant Proteins/isolation & purification , Recombinant Proteins/metabolism , Sequence Homology, Amino Acid , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization , Transferases (Other Substituted Phosphate Groups)/genetics , Transferases (Other Substituted Phosphate Groups)/physiology
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