Measurements of plasma membrane potential changes inSaccharomyces cerevisiaecells reveal the importance of the Tok1 channel in membrane potential maintenance
- 1 November 2006
- journal article
- Published by Oxford University Press (OUP) in FEMS Yeast Research
- Vol. 6 (7), 1039-1046
- https://doi.org/10.1111/j.1567-1364.2006.00140.x
Abstract
K+ is one of the cations (besides protons) whose transport across the plasma membrane is believed to contribute to the maintenance of membrane potential. To ensure K+ transport, Saccharomyces cerevisiae cells possess several types of active and passive transporters mediating the K+ influx and efflux, respectively. A diS-C3(3) assay was used to compare the contributions of various potassium transporters to the membrane potential changes of S. cerevisiae cells in the exponential growth phase. Altogether, the contributions of six K+ transporters to the maintenance of a stable membrane potential were tested. As confirmed by the observed hyperpolarization of trk1 trk2 deletion strains, the diS-C3(3) assay is a suitable method for comparative studies of the membrane potential of yeast strains differing in the presence/absence of one or more cation transporters. We have shown that the presence of the Tok1 channel strongly influences membrane potential: deletion of the TOK1 gene results in significant plasma membrane depolarization, whereas strains overexpressing the TOK1 gene are hyperpolarized. We have also proved that plasma membrane potential is not the only parameter determining the hygromycin B sensitivity of yeast cells, and that the role of intracellular transporters in protecting against its toxic effects must also be considered.Keywords
This publication has 18 references indexed in Scilit:
- Characterization of the ion transport activity of the budding yeast Na+/H+ antiporter, Nha1p, using isolated secretory vesiclesBiochimica et Biophysica Acta (BBA) - Biomembranes, 2005
- The Yeast Endosomal Na+(K+)/H+Exchanger Nhx1 Regulates Cellular pH to Control Vesicle TraffickingMolecular Biology of the Cell, 2005
- Characterization of potassium transport in wild‐type and isogenic yeast strains carrying all combinations of trk1, trk2 and tok1 null mutationsMolecular Microbiology, 2003
- Potassium transport in fungi and plantsBiochimica et Biophysica Acta (BBA) - Reviews on Biomembranes, 2000
- A new family of outwardly rectifying potassium channel proteins with two pore domains in tandemNature, 1995
- Gating and conductance in an outward-rectifying K+ channel from the plasma membrane of Saccharomyces cerevisiaeThe Journal of Membrane Biology, 1993
- Determination of a specific region of the purine–cytosine permease involved in the recognition of its substratesMolecular Microbiology, 1992
- Molecular Genetics of Yeast Ion TransportInternational Review of Cytology, 1992
- A novel P‐type ATPase from yeast involved in sodium transportFEBS Letters, 1991
- Yeast plasma membrane ATPase is essential for growth and has homology with (Na+ + K+), K+- and Ca2+-ATPasesNature, 1986