AbstractCardiac K+ channels are responsible for repolarization of the action potential and are the targets of several antiarrhythmic drugs. This study examines the differential expression of six K+ channel mRNAs during rat heart development. RK1 and RK2 K+ channel transcripts were undetectable prior to 10 days after birth. In contrast, RK4 mRNA was present at equivalent levels from day 14 in utero to 20 days after birth. RK3 and RK5 were detected as early as 14 days in utero. These data indicate that K+ channel expression in the heart is closely regulated and further argue for physiologically distinct roles for K+ channel isoforms
AIMS: Cardiac electrical activity is extraordinarily robust. However, when it goes wrong it can have...
AbstractA novel member of the RCK family of rat brain K+ channels, called RCK2, has been sequenced a...
The hyperpolarization-activated cyclic nucleotide-gated (HCN) channels are expressed in pacemaker ce...
AbstractCardiac K+ channels are responsible for repolarization of the action potential and are the t...
AbstractA full-length K+ channel cDNA (RHK1) was isolated from a rat cardiac library using the polym...
To understand molecular mechanisms that regulate formation and maintenance of cardiac IKr (rapidly a...
AbstractA voltage-sensitive K+ channel previously cloned from rat heart designated RK5 (rat Kv4.2) (...
The multiple K + channels are crucial for repolarization and configuration of the action potential i...
To understand molecular mechanisms that regulate formation and maintenance of cardiac IKr (rapidly a...
To understand molecular mechanisms that regulate formation and maintenance of cardiac IKr (rapidly a...
The definitive version is available at www.blackwell-synergy.com1. Many members of the tandem-pore K...
AbstractMammalian central neurons regulate a diverse set of functions by changes in spatial and temp...
AbstractWe have isolated a cDNA coding for a delayed rectifier K+ channel (RBKV1.5) from rabbit hear...
The expression and properties of ionic channels were investigated in dissociated neurons from neonat...
AbstractA full-length K+ channel cDNA (RHK1) was isolated from a rat cardiac library using the polym...
AIMS: Cardiac electrical activity is extraordinarily robust. However, when it goes wrong it can have...
AbstractA novel member of the RCK family of rat brain K+ channels, called RCK2, has been sequenced a...
The hyperpolarization-activated cyclic nucleotide-gated (HCN) channels are expressed in pacemaker ce...
AbstractCardiac K+ channels are responsible for repolarization of the action potential and are the t...
AbstractA full-length K+ channel cDNA (RHK1) was isolated from a rat cardiac library using the polym...
To understand molecular mechanisms that regulate formation and maintenance of cardiac IKr (rapidly a...
AbstractA voltage-sensitive K+ channel previously cloned from rat heart designated RK5 (rat Kv4.2) (...
The multiple K + channels are crucial for repolarization and configuration of the action potential i...
To understand molecular mechanisms that regulate formation and maintenance of cardiac IKr (rapidly a...
To understand molecular mechanisms that regulate formation and maintenance of cardiac IKr (rapidly a...
The definitive version is available at www.blackwell-synergy.com1. Many members of the tandem-pore K...
AbstractMammalian central neurons regulate a diverse set of functions by changes in spatial and temp...
AbstractWe have isolated a cDNA coding for a delayed rectifier K+ channel (RBKV1.5) from rabbit hear...
The expression and properties of ionic channels were investigated in dissociated neurons from neonat...
AbstractA full-length K+ channel cDNA (RHK1) was isolated from a rat cardiac library using the polym...
AIMS: Cardiac electrical activity is extraordinarily robust. However, when it goes wrong it can have...
AbstractA novel member of the RCK family of rat brain K+ channels, called RCK2, has been sequenced a...
The hyperpolarization-activated cyclic nucleotide-gated (HCN) channels are expressed in pacemaker ce...