AbstractA full-length K+ channel cDNA (RHK1) was isolated from a rat cardiac library using the polymerase chain reaction (PCR) method and degenerate oligonucleotide primers derived from K+ channel sequences conserved between Drosophila Shaker H4 and mouse brain MBK1. Although RHK1 was isolated from heart, its expression was found in both heart and brain. The RHK1-encoded protein, when expressed in Xenopus oocytes, gated a 4-aminopyridine (4-AP)-sensitive transient outward current. This current is similar to the transient outward current measured in rat ventricular myocytes with respect to voltage-dependence of activation and inactivation, time course of activation and inactivation, and pharmacology
AbstractWe describe the expression of functional Na+ channel in Xenopus oocytes injected with cRNA t...
AbstractWe have cloned a novel inward rectifier potassium channel from a rat brain cDNA library and ...
Cloning and sequencing of cDNAs isolated from a rat cortex cDNA library reveals that a gene family e...
AbstractA full-length K+ channel cDNA (RHK1) was isolated from a rat cardiac library using the polym...
AbstractA voltage-sensitive K+ channel previously cloned from rat heart designated RK5 (rat Kv4.2) (...
AbstractCardiac K+ channels are responsible for repolarization of the action potential and are the t...
AbstractWe have isolated a cDNA coding for a delayed rectifier K+ channel (RBKV1.5) from rabbit hear...
AbstractA novel member of the RCK family of rat brain K+ channels, called RCK2, has been sequenced a...
AbstractWe have isolated a cDNA coding for an inward rectifier K+ channel (RBHIK1) from rabbit heart...
AbstractWe have cloned a novel inward rectifier K+ channel (hIRK2) from a human frontal cortex cDNA ...
AbstractWe report the cloning and functional expression of a novel K+ channel β-subunit from human a...
AbstractA rat brain cDNA (Raw3) related to the Drosophila Show K* channel family has been characteri...
AbstractInjection into Xenopus oocytes of RNA synthesized in vitro using the rat brain cDNA RCK1 as ...
AbstractUsing a cDNA library from bovine adrenal medulla, we have isolated cDNAs coding for a potass...
The application of molecular biology and the development of patch clamp techniques led to a dramatic...
AbstractWe describe the expression of functional Na+ channel in Xenopus oocytes injected with cRNA t...
AbstractWe have cloned a novel inward rectifier potassium channel from a rat brain cDNA library and ...
Cloning and sequencing of cDNAs isolated from a rat cortex cDNA library reveals that a gene family e...
AbstractA full-length K+ channel cDNA (RHK1) was isolated from a rat cardiac library using the polym...
AbstractA voltage-sensitive K+ channel previously cloned from rat heart designated RK5 (rat Kv4.2) (...
AbstractCardiac K+ channels are responsible for repolarization of the action potential and are the t...
AbstractWe have isolated a cDNA coding for a delayed rectifier K+ channel (RBKV1.5) from rabbit hear...
AbstractA novel member of the RCK family of rat brain K+ channels, called RCK2, has been sequenced a...
AbstractWe have isolated a cDNA coding for an inward rectifier K+ channel (RBHIK1) from rabbit heart...
AbstractWe have cloned a novel inward rectifier K+ channel (hIRK2) from a human frontal cortex cDNA ...
AbstractWe report the cloning and functional expression of a novel K+ channel β-subunit from human a...
AbstractA rat brain cDNA (Raw3) related to the Drosophila Show K* channel family has been characteri...
AbstractInjection into Xenopus oocytes of RNA synthesized in vitro using the rat brain cDNA RCK1 as ...
AbstractUsing a cDNA library from bovine adrenal medulla, we have isolated cDNAs coding for a potass...
The application of molecular biology and the development of patch clamp techniques led to a dramatic...
AbstractWe describe the expression of functional Na+ channel in Xenopus oocytes injected with cRNA t...
AbstractWe have cloned a novel inward rectifier potassium channel from a rat brain cDNA library and ...
Cloning and sequencing of cDNAs isolated from a rat cortex cDNA library reveals that a gene family e...