Several different methods have been employed in the study of voltage-gated ion channels. Electrophysiological studies on excitable cells in vertebrates and molluscs have shown that many different voltage-gated potassium (K+) channels and sodium channels may coexist in the same organism. Parallel genetic studies in Drosophila have identified mutations in several genes that alter the properties of specific subsets of physiologically identified ion channels. Chapter 2 describes molecular studies that identify two Drosophila homologs of vertebrate sodium-channel genes. Mutations in one of these Drosophila sodium-channel genes are shown to be responsible for the temperature-dependent paralysis of a behavioural mutant parats. Evolutionary...
The voltage-gated potassium channels of the Kv1 (Shaker-type) family are proteins found in many cell...
The voltage-gated potassium channels of the Kv1 (Shaker-type) family are proteins found in many cell...
Voltage-clamp analysis of Drosophila larval muscle revealed that ether a go-go (eag) mutations affec...
Voltage-dependent ion channels mediate electrical signals in the nervous system; many sodium (Na+), ...
Genetic analysis of ion channel dysfunction in Drosophila. To dissect the molecular mechanisms of el...
Since Hodgkin and Huxley discovered the potassium current that underlies the falling phase of action...
Since Hodgkin and Huxley discovered the potassium current that underlies the falling phase of action...
Since Hodgkin and Huxley discovered the potassium current that underlies the falling phase of action...
In this review we examine mutations that alter electrical excitability in the nervous system of the...
In this review we examine mutations that alter electrical excitability in the nervous system of the...
Voltage-sensitive sodium channels play a key role in nerve cells where they are responsible for the ...
The Drosophila Shaker (Sh) gene appears to encode a type of voltage-sensitive potassium (K+) channel...
A-type K+ currents are expressed in Xenopus oocytes injected with in vitro-synthesized transcripts f...
K+ channels are known through electrophysiology and pharmacology to be an exceptionally diverse grou...
K+ channels are known through electrophysiology and pharmacology to be an exceptionally diverse grou...
The voltage-gated potassium channels of the Kv1 (Shaker-type) family are proteins found in many cell...
The voltage-gated potassium channels of the Kv1 (Shaker-type) family are proteins found in many cell...
Voltage-clamp analysis of Drosophila larval muscle revealed that ether a go-go (eag) mutations affec...
Voltage-dependent ion channels mediate electrical signals in the nervous system; many sodium (Na+), ...
Genetic analysis of ion channel dysfunction in Drosophila. To dissect the molecular mechanisms of el...
Since Hodgkin and Huxley discovered the potassium current that underlies the falling phase of action...
Since Hodgkin and Huxley discovered the potassium current that underlies the falling phase of action...
Since Hodgkin and Huxley discovered the potassium current that underlies the falling phase of action...
In this review we examine mutations that alter electrical excitability in the nervous system of the...
In this review we examine mutations that alter electrical excitability in the nervous system of the...
Voltage-sensitive sodium channels play a key role in nerve cells where they are responsible for the ...
The Drosophila Shaker (Sh) gene appears to encode a type of voltage-sensitive potassium (K+) channel...
A-type K+ currents are expressed in Xenopus oocytes injected with in vitro-synthesized transcripts f...
K+ channels are known through electrophysiology and pharmacology to be an exceptionally diverse grou...
K+ channels are known through electrophysiology and pharmacology to be an exceptionally diverse grou...
The voltage-gated potassium channels of the Kv1 (Shaker-type) family are proteins found in many cell...
The voltage-gated potassium channels of the Kv1 (Shaker-type) family are proteins found in many cell...
Voltage-clamp analysis of Drosophila larval muscle revealed that ether a go-go (eag) mutations affec...