Reference: Hur HS, et al. (2006) Characterization of Osh3, an oxysterol-binding protein, in filamentous growth of Saccharomyces cerevisiae and Candida albicans. J Microbiol 44(5):523-9

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Abstract


OSH3 is one of the seven yeast homologues of the oxysterol binding proteins (OSBPs) which have the major binding affinity to the oxysterols and function as regulator of cholesterol biosynthesis in mammals. Mutational analysis of OSH3 showed that OSH3 plays a regulatory role in the yeast-to-hyphal transition through its oxysterol-binding domain in Saccharomyces cerevisiae. The OSH3 gene was also identified in the pathogenic yeast Candida albicans. Deletion of OSH3 caused a defect in the filamentous growth, which is the major cause of the C. albicans pathogencity. The filamentation defect of the mutation in the MAPK-associated transcription factor, namely cph1Delta was suppressed by overexpression of OSH3. These findings suggest the regulatory roles of OSH3 in the yeast filamentous growth and the functional conservations of OSH3 in S. cerevisiae and C. albicans.

Reference Type
Journal Article | Research Support, Non-U.S. Gov't
Authors
Hur HS, Ryu JH, Kim KH, Kim J
Primary Lit For
OSH3
Additional Lit For
STE12

Gene Ontology Annotations 1 entry for 1 gene


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Gene/ComplexQualifierGene Ontology TermAnnotation ExtensionEvidenceSourceAssigned On
OSH3involved inpseudohyphal growthIMPSGD2013-08-07
Showing 1 to 1 of 1 entries

Phenotype Annotations 2 entries for 1 gene


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GenePhenotypeExperiment TypeMutant InformationStrain BackgroundChemicalDetails
OSH3cold sensitivity: decreased
classical geneticsnull
Allele: osh3-Δ
Sigma1278bTemperature: reduced temperature, 16 °C
OSH3pseudohyphal growth: increased
homozygous diploidnull
Allele: osh3-Δ
Sigma1278bMedia: nitrogen starvation medium (SLAD)
Showing 1 to 2 of 2 entries