Ionic and gating currents from noninactivating Shaker B K+ channels were studied with the cut-open oocyte voltage clamp technique and compared with the macropatch clamp technique. The performance of the cut-open oocyte voltage clamp technique was evaluated from the electrical properties of the clamped upper domus membrane, K+ tail current measurements, and the time course of K+ currents after partial blockade. It was concluded that membrane currents less than 20 microA were spatially clamped with a time resolution of at least 50 microseconds. Subtracted, unsubtracted gating currents with the cut-open oocyte voltage clamp technique and gating currents recorded in cell attached macropatches had similar properties and time course, and the char...
The transient K conductance of rat central neurons was studied under voltage clamp. Currents were re...
Fast inactivating Shaker H4 potassium channels and nonconducting pore mutant Shaker H4 W434F channel...
The single K-channel current reported in a previous note was also studied in "outside-out" condition...
Ionic and gating currents from noninactivating Shaker B K+ channels were studied with the cut-open o...
Steady-state and kinetic properties of gating currents of the Shaker K+ channels were studied in cha...
Steady-state and kinetic properties of gating currents of the Shaker K+ channels were studied in cha...
AbstractThe opening and closing of the ion conduction pathway in ion channels underlies the generati...
Prolonged depolarization induces a slow inactivation process in some K+ channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some K+ channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
Voltage gated channels underlie generation, detection, and amplification of electrical signals in th...
Fast inactivating Shaker H4 potassium channels and nonconducting pore mutant Shaker H4 W434F channel...
We have studied ionic and gating currents in mutant and wild-type Shaker K+ channels to investigate ...
A quantitative analysis of the time and voltage dependence of outward-rectifying K+ currents (IK+.ou...
The transient K conductance of rat central neurons was studied under voltage clamp. Currents were re...
Fast inactivating Shaker H4 potassium channels and nonconducting pore mutant Shaker H4 W434F channel...
The single K-channel current reported in a previous note was also studied in "outside-out" condition...
Ionic and gating currents from noninactivating Shaker B K+ channels were studied with the cut-open o...
Steady-state and kinetic properties of gating currents of the Shaker K+ channels were studied in cha...
Steady-state and kinetic properties of gating currents of the Shaker K+ channels were studied in cha...
AbstractThe opening and closing of the ion conduction pathway in ion channels underlies the generati...
Prolonged depolarization induces a slow inactivation process in some K+ channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some K+ channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
Voltage gated channels underlie generation, detection, and amplification of electrical signals in th...
Fast inactivating Shaker H4 potassium channels and nonconducting pore mutant Shaker H4 W434F channel...
We have studied ionic and gating currents in mutant and wild-type Shaker K+ channels to investigate ...
A quantitative analysis of the time and voltage dependence of outward-rectifying K+ currents (IK+.ou...
The transient K conductance of rat central neurons was studied under voltage clamp. Currents were re...
Fast inactivating Shaker H4 potassium channels and nonconducting pore mutant Shaker H4 W434F channel...
The single K-channel current reported in a previous note was also studied in "outside-out" condition...