6533b7dafe1ef96bd126e34a
RESEARCH PRODUCT
Null mutants of Candida albicans for cell-wall-related genes form fragile biofilms that display an almost identical extracellular matrix proteome.
Eulogio ValentínJosé P. MartínezManuel CasanovaRosario BlanesAmelia MurguiAngel Domínguezsubject
0301 basic medicineSignal peptideProteomeMutantGenes FungalBiologyApplied Microbiology and BiotechnologyMicrobiologyMass SpectrometryCell wallFungal Proteins03 medical and health sciencesCell WallCandida albicansElectrophoresis Gel Two-DimensionalCandida albicansGel electrophoresisMolecular massBiofilmGeneral Medicinebiology.organism_classificationMolecular biologyExtracellular Matrix030104 developmental biologyBiofilmsProteomeGene Deletiondescription
By two-dimensional gel electrophoresis (2-DE) and mass spectrometry, we have characterized the polypeptide species present in extracts obtained by 60% ethanol treatment of whole mature (48 h) biofilms formed by a reference strain (CAI4- URA3 ) and four Candida albicans null mutants for cell-wall-related genes ( ALG5, CSA1, MNN9 and PGA10) . Null mutants form fragile biofilms that appeared partially split and weakly attached to the substratum contrary to those produced by the reference strain. An almost identical, electrophoretic profile consisting of about 276 spots was visualized in all extracts examined. Proteomic analysis led to the identification of 131 polypeptides, corresponding to 86 different protein species, being the rest isoforms—83 displayed negative hydropathic indexes and 82 lack signal peptide. The majority of proteins appeared at pI between 4 and 6, and molecular mass between 10 and 94 kDa. The proteins identified belonged to the following Gene Ontology categories: 21.9% unknown molecular function, 16.2% oxidoreductase activity, 13.3% hydrolase activity and 41.8% distributed between other different GO categories. Strong defects in biofilm formation appreciated in the cell-wall mutant strains could be attributed to defects in aggregation due to abnormal cell wall formation rather than to differences in the biofilm extracellular matrix composition.
year | journal | country | edition | language |
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2016-09-07 | FEMS yeast research |