Article
Subunit composition of minK potassium channels.
Neuron - 1 Jun 1995
Wang K W, Goldstein S A
Abstract excerpt
Expression of minK protein in Xenopus oocytes induces a slowly activating, voltage-dependent, potassium-selective current. Point mutations in minK that alter current gating kinetics, ion selectivity, pharmacology, and response to protein kinase C all support the notion that minK is a structural p...
Topics
- Animals
- Electric Conductivity
- Female
- Gene Expression
- Gene Transfer Techniques
- Kinetics
- Macromolecular Substances
- Mathematics
- Mutagenesis
- Oocytes
- Phenotype
- Point Mutation
- Potassium Channels
- Potassium Channels, Voltage-Gated
- RNA, Complementary
- Rats
- Structure-Activity Relationship
- Xenopus
