AbstractMammalian central neurons regulate a diverse set of functions by changes in spatial and temporal expression patterns of a large family of K+ channel gene products. Here the temporal patterns of expression of Kv2.1 (drkl) K+ channel mRNAs and polypeptides have been studied in rat brain. Northern blots using Kv2.1-specific probes show that three size classes (4.4, 9.0, 11.5 kb) of Kv2.1 K+ channel transcripts are present in rat brain. These mRNAs show differential patterns of expression over embryonic and postnatal developmental, with the 4.4 kb transcript being the predominant embryonic Kv2.1 mRNA, and the 11.5 kb transcript being the predominant adult mRNA. Immunoblots using Kv2.1-specific site-directed antibodies show the existence...
Dendritic excitability is modulated by the highly variable spatial and temporal expression pattern o...
Voltage-gated potassium (K) channels are important in controlling a neuron's excitability. In this t...
<p>(<u>A</u>) Western blot of Kv1.2, Kv2.2 and Kv7.2 in hippocampal neurons cultured at high density...
AbstractMammalian central neurons regulate a diverse set of functions by changes in spatial and temp...
Hippocampal neurons are highly plastic in their excitable properties, both during development and in...
channels during embryonic development and in cell proliferation, we present here the first descript...
Voltage-gated K+ channels in the mammalian brain are functionally heterogeneous. Mechanisms which ma...
Voltage-gated K+ channels in the mammalian brain are functionally heterogeneous. Mechanisms which ma...
Voltage-dependent ion channels are thought to consist of a highly conserved repeated core of six tra...
Injection into Xenopus oocytes of RNA synthesized in vitro using the rat brain cDNA RCK1 as a templa...
AbstractInjection into Xenopus oocytes of RNA synthesized in vitro using the rat brain cDNA RCK1 as ...
The Kv4 family of voltage-gated K+ channels underlie the fast transient (A-type) outward K+ current....
AbstractThe complete amino acid sequence of a potassium channel protein of rat brain, Kv3.2b, plus a...
Dendritic excitability is modulated by the highly variable spatial and temporal expression pattern o...
Dendritic excitability is modulated by the highly variable spatial and temporal expression pattern o...
Dendritic excitability is modulated by the highly variable spatial and temporal expression pattern o...
Voltage-gated potassium (K) channels are important in controlling a neuron's excitability. In this t...
<p>(<u>A</u>) Western blot of Kv1.2, Kv2.2 and Kv7.2 in hippocampal neurons cultured at high density...
AbstractMammalian central neurons regulate a diverse set of functions by changes in spatial and temp...
Hippocampal neurons are highly plastic in their excitable properties, both during development and in...
channels during embryonic development and in cell proliferation, we present here the first descript...
Voltage-gated K+ channels in the mammalian brain are functionally heterogeneous. Mechanisms which ma...
Voltage-gated K+ channels in the mammalian brain are functionally heterogeneous. Mechanisms which ma...
Voltage-dependent ion channels are thought to consist of a highly conserved repeated core of six tra...
Injection into Xenopus oocytes of RNA synthesized in vitro using the rat brain cDNA RCK1 as a templa...
AbstractInjection into Xenopus oocytes of RNA synthesized in vitro using the rat brain cDNA RCK1 as ...
The Kv4 family of voltage-gated K+ channels underlie the fast transient (A-type) outward K+ current....
AbstractThe complete amino acid sequence of a potassium channel protein of rat brain, Kv3.2b, plus a...
Dendritic excitability is modulated by the highly variable spatial and temporal expression pattern o...
Dendritic excitability is modulated by the highly variable spatial and temporal expression pattern o...
Dendritic excitability is modulated by the highly variable spatial and temporal expression pattern o...
Voltage-gated potassium (K) channels are important in controlling a neuron's excitability. In this t...
<p>(<u>A</u>) Western blot of Kv1.2, Kv2.2 and Kv7.2 in hippocampal neurons cultured at high density...