SummaryM-type K+ channels, encoded by KCNQ2–KCNQ5 genes, play key roles in regulation of neuronal excitability; however, less is known about the mechanisms controlling their transcriptional expression. Here, we discovered a mechanism regulating KCNQ2/3 transcriptional expression by neuronal activity in rodent neurons, involving activation of calcineurin and nuclear factor of activated T cell (NFAT) transcription factors, orchestrated by A kinase-anchoring protein (AKAP)79/150. The signal requires Ca2+ influx through L-type Ca2+ channels and both local and global Ca2+ elevations. We postulate increased M-channel expression to act as a negative feedback to suppress neuronal hyperexcitability, demonstrated by profoundly upregulated KCNQ2/3 tra...
The muscarine-sensitive K+ current (M-current) stabilizes the resting membrane potential in neurons,...
signaling com towards the next ge, U Reviewtenets of AKAP signaling: specificity, sensitivity, local...
The M-current is a non-inactivating voltage-gated potassium channel composed of homomeric and hetero...
SummaryM-type K+ channels, encoded by KCNQ2–KCNQ5 genes, play key roles in regulation of neuronal ex...
Regulation of the resting membrane potential and the repolarization of neurons are important in regu...
SummaryL-type voltage-gated Ca2+ channels (LTCC) couple neuronal excitation to gene transcription. L...
Regulation of the resting membrane potential and the repolarization of neurons are important in regu...
SummaryNeuronal L-type calcium channels contribute to dendritic excitability and activity-dependent ...
© 2017 the authors. KCNQ2 potassium channels are critical for normal brain function, as both loss-of...
Epilepsy can develop in response to a brain insult, such as an initial seizure, stroke or traumatic ...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K+ chann...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K+ chann...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K(+) cha...
KCNQ channels are critical determinants of neuronal excitability, thus emerging as a novel target of...
Mutations in KCNQ2 and KCNQ3 voltage-gated potassium channels lead to neonatal epilepsy as a consequ...
The muscarine-sensitive K+ current (M-current) stabilizes the resting membrane potential in neurons,...
signaling com towards the next ge, U Reviewtenets of AKAP signaling: specificity, sensitivity, local...
The M-current is a non-inactivating voltage-gated potassium channel composed of homomeric and hetero...
SummaryM-type K+ channels, encoded by KCNQ2–KCNQ5 genes, play key roles in regulation of neuronal ex...
Regulation of the resting membrane potential and the repolarization of neurons are important in regu...
SummaryL-type voltage-gated Ca2+ channels (LTCC) couple neuronal excitation to gene transcription. L...
Regulation of the resting membrane potential and the repolarization of neurons are important in regu...
SummaryNeuronal L-type calcium channels contribute to dendritic excitability and activity-dependent ...
© 2017 the authors. KCNQ2 potassium channels are critical for normal brain function, as both loss-of...
Epilepsy can develop in response to a brain insult, such as an initial seizure, stroke or traumatic ...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K+ chann...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K+ chann...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K(+) cha...
KCNQ channels are critical determinants of neuronal excitability, thus emerging as a novel target of...
Mutations in KCNQ2 and KCNQ3 voltage-gated potassium channels lead to neonatal epilepsy as a consequ...
The muscarine-sensitive K+ current (M-current) stabilizes the resting membrane potential in neurons,...
signaling com towards the next ge, U Reviewtenets of AKAP signaling: specificity, sensitivity, local...
The M-current is a non-inactivating voltage-gated potassium channel composed of homomeric and hetero...