Interactions between gene products involved in divalent cation transport in Saccharomyces cerevisiae
- 1 May 1994
- journal article
- research article
- Published by Springer Nature in Molecular Genetics and Genomics
- Vol. 244 (3) , 303-311
- https://doi.org/10.1007/bf00285458
Abstract
The COT1 and ZRC1 genes of Saccharomyces cerevisiae are structurally related dosage-dependent suppressors of metal toxicity. COT1 confers increased tolerance to high levels of cobalt; ZRC1 confers increased tolerance to high levels of zinc. The two genes are not linked and have been mapped; COT1 to chromosome XV and ZRC1 to chromosome XIII. Phenotypes related to metal homeostasis have been examined in strains with varied COT1 and ZRC1 gene doses. Overexpression of COT1 confers tolerance to moderately toxic levels of zinc and ZRC1 confers tolerance to moderately toxic levels of cobalt. Strains that carry null alleles at both loci are viable. The metal-hypersensitive phenotypes of mutations in either gene are largely unaffected by changes in dosage of the other. COT1 and ZRCI function independently in conferring tolerance to their respective metals, yet the uptake of cobalt ions by yeast cells is dependent on the gene dosage of ZRC1 as well as of COT1 Strains that overexpress ZRC1 have increased uptake of cobalt ions, while ZRCI null mutants exhibit decreased cobalt uptake. The defects in cobalt uptake due to mutations at COT1 and ZRC1 are additive, suggesting that the two genes are responsible for the majority of cobalt and zinc uptake in yeast cells. The function of either gene product seems to be more important in metal homeostasis than is the GRR1 gene product, which is also involved in metal metabolism. Mutations in the GRR1 gene have no effect on the cobalt-related phenotypes of strains that have altered gene dosage of either COT1 or ZRC1.Keywords
This publication has 16 references indexed in Scilit:
- Studies on transformation of Escherichia coli with plasmidsPublished by Elsevier ,2006
- A ten-minute DNA preparation from yeast efficiently releases autonomous plasmids for transformaion of Escherichia coliPublished by Elsevier ,2003
- GRR1 of Saccharomyces cerevisiae is required for glucose repression and encodes a protein with leucine-rich repeats.Molecular and Cellular Biology, 1991
- [3] Mapping yeast genesPublished by Elsevier ,1991
- [1] Getting started with yeastPublished by Elsevier ,1991
- Metal ion resistance in fungi: Molecular mechanisms and their regulated expressionJournal of Cellular Biochemistry, 1991
- Identification of a gene conferring resistance to zinc and cadmium ions in the yeast Saccharomyces cerevisiaeMolecular Genetics and Genomics, 1989
- Random-clone strategy for genomic restriction mapping in yeast.Proceedings of the National Academy of Sciences, 1986
- Cobalt-(cysteinyl)4tetrahedra in yeast cobalt(II)-thioneinBiochemical and Biophysical Research Communications, 1985
- [12] One-step gene disruption in yeastPublished by Elsevier ,1983