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RESEARCH PRODUCT
Complementation of Saccharomyces cerevisiae mutationsin genes involved in translation and protein folding (EFB1 and SSB1)with Candida albicans cloned genes
Daniel GozalboVictoria ManeuPatricia Roigsubject
Protein FoldingSaccharomyces cerevisiae ProteinsSaccharomyces cerevisiaeMutantSaccharomyces cerevisiaeMicrobiologyPeptide Elongation Factor 1Transformation GeneticGene Expression Regulation FungalHeat shock proteinCandida albicansProtein biosynthesisHSP70 Heat-Shock ProteinsCandida albicansMolecular BiologyGenebiologyGenetic Complementation TestTemperatureGeneral Medicinebiology.organism_classificationMolecular biologyComplementationProtein BiosynthesisChaperone (protein)Mutationbiology.proteindescription
We have demonstrated that the expression of Candida albicans genes involved in translation and protein folding (EFB1 and SSB1) complements the phenotype of Saccharomyces cerevisiae mutants. The elongation factor 1beta (EF-1beta) is essential for growth and efb1 S. cerevisiae null mutant cells are not viable; however, viable haploid cells, carrying the disrupted chromosomal allele of the S. cerevisiae EFB1 gene and pEFB1, were isolated upon sporulation of a diploid strain which was heterozygous at the EFB1 locus and transformed with pEFB1 (a pEMBLYe23 derivative plasmid containing an 8-kb DNA fragment from the C. albicans genome which contains the EFB1 gene). This indicates that the C. albicans EFB1 gene encodes a functional EF-1beta. Expression of the SSB1 gene from C. albicans, which codes for a member of the 70-kDa heat shock protein family, in S. cerevisiae ssb1 ssb2 double mutant complements the mutant phenotype (poor growth particularly at low temperature, and sensitivity to certain protein synthesis inhibitors, such as paromomycin). This complementation indicates that C. albicans Ssbl may function as a molecular chaperone on the translating ribosomes, as described in S. cerevisiae. Northern blot analysis showed that SSB mRNA levels increased after mild cold shift (28 degrees C to 23 degrees C) and rapidly decreased after mild heat shift (from 28 degrees C to 37 degrees C, and particularly to 42 degrees C), indicating that SSB1 expression is regulated by temperature. Therefore, Ssb1 may be considered as a molecular chaperone whose pattern of expression is similar to that found in ribosomal proteins, according to its common role in translation.
year | journal | country | edition | language |
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2000-01-11 | Research in Microbiology |