Regulation of the resting membrane potential and the repolarization of neurons are important in regulating neuronal excitability. The potassium channel subunits Kv7.2 and Kv7.3 play a key role in stabilizing neuronal activity. Mutations in KCNQ2 and KCNQ3, the genes encoding Kv7.2 and Kv7.3, cause a neonatal form of epilepsy, and activators of these channels have been identified as novel antiepileptics and analgesics. Despite the observations that regulation of these subunits has profound effects on neuronal function, almost nothing is known about the mechanisms responsible for controlling appropriate expression levels. Here we identify two mechanisms responsible for regulating KCNQ2 and KCNQ3 mRNA levels. We show that the transcription fac...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K+ chann...
KCNQ2/KCNQ3 channels are the molecular correlates of the neuronal M-channels, which play a major rol...
Der durch KCNQ (Kv7) Kanäle vermittelte M-Strom spielt eine wichtige Rolle für elektrische Eigenscha...
Regulation of the resting membrane potential and the repolarization of neurons are important in regu...
Epilepsy can develop in response to a brain insult, such as an initial seizure, stroke or traumatic ...
SummaryM-type K+ channels, encoded by KCNQ2–KCNQ5 genes, play key roles in regulation of neuronal ex...
© 2017 the authors. KCNQ2 potassium channels are critical for normal brain function, as both loss-of...
AbstractNeuropathic pain is a severe health problem for which there is a lack of effective therapy. ...
M-current mediating KCNQ (Kv7) channels play an important role in regulating the excitability of neu...
KCNQ channels are critical determinants of neuronal excitability, thus emerging as a novel target of...
Neuronal hyperexcitability is a feature of epilepsy and both inflammatory and neuropathic pain. M cu...
KCNQ2 and KCNQ3 K+ channel subunits underlie the muscarinic-regulated K+ current (I(KM)), a widespre...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K+ chann...
Neuropathic pain is a severe health problem for which there is a lack of effective therapy. A freque...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K(+) cha...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K+ chann...
KCNQ2/KCNQ3 channels are the molecular correlates of the neuronal M-channels, which play a major rol...
Der durch KCNQ (Kv7) Kanäle vermittelte M-Strom spielt eine wichtige Rolle für elektrische Eigenscha...
Regulation of the resting membrane potential and the repolarization of neurons are important in regu...
Epilepsy can develop in response to a brain insult, such as an initial seizure, stroke or traumatic ...
SummaryM-type K+ channels, encoded by KCNQ2–KCNQ5 genes, play key roles in regulation of neuronal ex...
© 2017 the authors. KCNQ2 potassium channels are critical for normal brain function, as both loss-of...
AbstractNeuropathic pain is a severe health problem for which there is a lack of effective therapy. ...
M-current mediating KCNQ (Kv7) channels play an important role in regulating the excitability of neu...
KCNQ channels are critical determinants of neuronal excitability, thus emerging as a novel target of...
Neuronal hyperexcitability is a feature of epilepsy and both inflammatory and neuropathic pain. M cu...
KCNQ2 and KCNQ3 K+ channel subunits underlie the muscarinic-regulated K+ current (I(KM)), a widespre...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K+ chann...
Neuropathic pain is a severe health problem for which there is a lack of effective therapy. A freque...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K(+) cha...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K+ chann...
KCNQ2/KCNQ3 channels are the molecular correlates of the neuronal M-channels, which play a major rol...
Der durch KCNQ (Kv7) Kanäle vermittelte M-Strom spielt eine wichtige Rolle für elektrische Eigenscha...