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PMID: 10407278 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Disruption of six novel yeast genes located on chromosome II reveals one gene essential for vegetative growth and two required for sporulation and conferring hypersensitivity to various chemicals.

Yeast (Chichester, England) ·Vol. 15 ·No. 10B ·1999-07-00 ·Pages 987-1000

Kucharczyk R, Gromadka R, Migdalski A, Slonimski PP, Rytka J

Abstract

A PCR-based method for targeted gene deletion by kanMX4 module was used to construct complete deletion mutants of six individual open reading frames from chromosome II: YBR128c, YBR131w, YBR133c, YBR137w, YBR138c and YBR142w. The ORFs were deleted in two diploid strains, FY1679 and W303. Sporulation and tetrad analysis revealed that only one ORF, YBR142w, encoding a putative DEAD-box RNA helicase, is an essential gene. A systematic phenotypic analysis of the deleted mutants was carried out. Homozygous diploids ybr128cDelta/ybr128cDelta and ybr131wDelta/ybr131wDelta did not sporulate. The ybr131cDelta mutant whether haploid or homozygous diploid, in addition displayed an increased sensitivity to Caffeine, Calcium and Zinc, and to emphasize this phenotype we named the gene CCZ1. ORF YBR133c was independently reported by others as Histone Synthetic Lethal (HSL7) (Ma et al., 1996). We found that the aberrant morphology characteristic for ybr133cDelta (hsl7Delta) cells was observed in W303 but not in FY1679 genetic background. Furthermore, we observed that deletion of YBR133c had a pleiotropic effect under a wide range of conditions, including increased sensitivity to calcium, caffeine, calcofluor white, vanadate and verapamil. The effects of the deletion were reinforced in W303 background. We found no phenotypic effects of the two remaining deletions, ybr137wDelta and ybr138cDelta.

MeSH Terms
Antifungal Agents/pharmacology Caffeine/pharmacology Cations/pharmacology Chromosomes, Fungal/genetics Cloning, Molecular DNA Primers Gene Deletion Genes, Essential Genes, Fungal Phenotype Polymerase Chain Reaction Saccharomyces cerevisiae/drug effects,genetics,physiology Spores, Fungal/physiology Transformation, Genetic Verapamil/pharmacology
Chemicals
Antifungal Agents Cations DNA Primers Caffeine Verapamil
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Kucharczyk R
Institute of Biochemistry and Biophysics, Polish Academy of Science, 5a Pawińskiego, Warsaw, Poland.
Gromadka R
Migdalski A
Slonimski P P
Rytka J
Article Info
Journal
Yeast (Chichester, England)
Abbr.
Yeast
ISSN
0749-503X
Published
1999-07-00
Pages
987-1000
Language
English
Region
England
NLM ID
8607637
Subset
IM
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