Other names published for TOK1: DUK1, YKC1, YORK, YPK1, YJL093C
TOK1 LITERATURE TOPICS
- Curated Literature
- Additional Literature
- All Curated References
- Primary Literature
- Reviews
- Genetics/Cell Biology
- Nucleic Acid Information
- Gene Product Information
- Related Genes/Proteins
- Research Aids
- Genome-wide Analysis
- Other Topics
- Additional Information
TOK1 - Primary Literature (30)
| Reference | Other Genes Addressed |
|---|---|
| Zahradka J and Sychrova H (2012) Plasma-membrane hyperpolarization diminishes the cation efflux via Nha1 antiporter and Ena ATPase under potassium-limiting conditions. FEMS Yeast Res 12(4):439-46 | |
| Calahorra M, et al. (2011) Ketoconazole and miconazole alter potassium homeostasis in Saccharomyces cerevisiae. Biochim Biophys Acta 1808(1):433-45 | |
| Maresova L, et al. (2009) Membrane hyperpolarization drives cation influx and fungicidal activity of amiodarone. J Biol Chem 284(5):2795-802 | |
| Roller A, et al. (2008) Functional consequences of leucine and tyrosine mutations in the dual pore motifs of the yeast K(+) channel, Tok1p. Pflugers Arch 456(5):883-96 | |
| Johansson I and Blatt MR (2006) Interactive domains between pore loops of the yeast K+ channel TOK1 associate with extracellular K+ sensitivity. Biochem J 393(Pt 3):645-55 | |
| Hasenbrink G, et al. (2005) Analysis of the mKir2.1 channel activity in potassium influx defective Saccharomyces cerevisiae strains determined as changes in growth characteristics. FEBS Lett 579(7):1723-31 | |
| Manlandro CM, et al. (2005) Ability of Sit4p to promote K+ efflux via Nha1p is modulated by Sap155p and Sap185p. Eukaryot Cell 4(6):1041-9 | |
| Roller A, et al. (2005) In the yeast potassium channel, Tok1p, the external ring of aspartate residues modulates both gating and conductance. Pflugers Arch 451(2):362-70 | |
| Proft M and Struhl K (2004) MAP kinase-mediated stress relief that precedes and regulates the timing of transcriptional induction. Cell 118(3):351-61 | |
| Bertl A, et al. (2003) Characterization of potassium transport in wild-type and isogenic yeast strains carrying all combinations of trk1, trk2 and tok1 null mutations. Mol Microbiol 47(3):767-80 | |
| Roberts SK (2003) TOK homologue in Neurospora crassa: first cloning and functional characterization of an ion channel in a filamentous fungus. Eukaryot Cell 2(1):181-90 | |
| Breinig F, et al. (2002) Kre1p, the plasma membrane receptor for the yeast K1 viral toxin. Cell 108(3):395-405 | |
| Erez O and Kahana C (2002) Deletions of SKY1 or PTK2 in the Saccharomyces cerevisiae trk1Deltatrk2Delta mutant cells exert dual effect on ion homeostasis. Biochem Biophys Res Commun 295(5):1142-9 | |
| Loukin SH and Saimi Y (2002) Carboxyl tail prevents yeast K(+) channel closure: proposal of an integrated model of TOK1 gating. Biophys J 82(2):781-92 | |
| Loukin SH, et al. (2002) The carboxyl tail forms a discrete functional domain that blocks closure of the yeast K+ channel. Proc Natl Acad Sci U S A 99(4):1926-30 | |
| Saldana C, et al. (2002) Splitting the two pore domains from TOK1 results in two cationic channels with novel functional properties. J Biol Chem 277(7):4797-805 | |
| Sesti F, et al. (2001) Immunity to K1 killer toxin: internal TOK1 blockade. Cell 105(5):637-44 | |
| Ahmed A, et al. (1999) A molecular target for viral killer toxin: TOK1 potassium channels. Cell 99(3):283-91 | |
| Fairman C, et al. (1999) Potassium uptake through the TOK1 K+ channel in the budding yeast. J Membr Biol 168(2):149-57 | |
| Roberts SK, et al. (1999) Divalent cation block of inward currents and low-affinity K+ uptake in Saccharomyces cerevisiae. J Bacteriol 181(1):291-7 | |
| Vergani P and Blatt MR (1999) Mutations in the yeast two pore K+ channel YKC1 identify functional differences between the pore domains. FEBS Lett 458(3):285-91 | |
| Bertl A, et al. (1998) Physiological characterization of the yeast plasma membrane outward rectifying K+ channel, DUK1 (TOK1), in situ. J Membr Biol 162(1):67-80 | |
| Gray AT, et al. (1998) TOK1 is a volatile anesthetic stimulated K+ channel. Anesthesiology 88(4):1076-84 | |
| Vergani P, et al. (1998) Mutations in the pore regions of the yeast K+ channel YKC1 affect gating by extracellular K+. EMBO J 17(24):7190-8 | |
| Vergani P, et al. (1997) Extracellular K+ and Ba2+ mediate voltage-dependent inactivation of the outward-rectifying K+ channel encoded by the yeast gene TOK1. FEBS Lett 405(3):337-44 | |
| Lesage F, et al. (1996) A pH-sensitive yeast outward rectifier K+ channel with two pore domains and novel gating properties. J Biol Chem 271(8):4183-7 | |
| Reid JD, et al. (1996) The S. cerevisiae outwardly-rectifying potassium channel (DUK1) identifies a new family of channels with duplicated pore domains. Receptors Channels 4(1):51-62 | |
| Ketchum KA, et al. (1995) A new family of outwardly rectifying potassium channel proteins with two pore domains in tandem. Nature 376(6542):690-5 | |
| Zhou XL, et al. (1995) YKC1 encodes the depolarization-activated K+ channel in the plasma membrane of yeast. FEBS Lett 373(2):170-6 | |
| Miosga T, et al. (1994) Sequence and function analysis of a 9.46 kb fragment of Saccharomyces cerevisiae chromosome X. Yeast 10(7):965-73 |



