KCNQ2 and KCNQ3, both of which are mutated in a type of human neonatal epilepsy, form heteromeric potassium channels that are expressed in broad regions of the brain. The associated current may be identical to the M-current, an important regulator of neuronal excitability. We now show that the RNA encoding the novel KCNQ5 channel is also expressed in brain and in sympathetic ganglia where it overlaps largely with KCNQ2 and KCNQ3. In addition, it is expressed in skeletal muscle. KCNQ5 yields currents that activate slowly with depolarization and can form heteromeric channels with KCNQ3. Currents expressed from KCNQ5 have voltage dependences and inhibitor sensitivities in common with M-currents. They are also inhibited by M1 muscarinic recepto...
AbstractHeteromeric KCNQ2/3 potassium channels are thought to underlie the M-current, a subthreshold...
KCNQ2 and KCNQ3 K+ channel subunits underlie the muscarinic-regulated K+ current (I(KM)), a widespre...
rn al o f P hy si ol og y Mutations in genes encoding voltage-gated ion channels can cause inherited...
Mutations in KCNQ2 and KCNQ3 voltage-gated potassium channels lead to neonatal epilepsy as a consequ...
Humans have over 70 potassium channel genes, but only some of these have been linked to disease. In ...
AbstractBenign familial neonatal convulsions, an autosomal dominant epilepsy of newborns, are linked...
Yeung SYM, Lange W, Schwake M, Greenwood IA. Expression profile and characterisation of a truncated ...
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...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K+ chann...
Mutations in either KCNQ2 or KCNQ3 underlie benign familial neonatal convulsions (BFNC), an inherite...
KCNQ2 (Kv7.2) and KCNQ3 (Kv7.3) K(+) channels dampen neuronal excitability and their functional impa...
Kv7.1-Kv7.5 (KCNQ1–5) K+ channels are voltage-gated K+ channels with major roles in neurons, muscle ...
The muscarinic-regulated potassium current (M-current), formed by the heteromeric assembly of subuni...
Voltage-gated ion channels encoded by the members of KCNQ gene family (KCNQ2-5) conduct the M-type p...
AbstractHeteromeric KCNQ2/3 potassium channels are thought to underlie the M-current, a subthreshold...
KCNQ2 and KCNQ3 K+ channel subunits underlie the muscarinic-regulated K+ current (I(KM)), a widespre...
rn al o f P hy si ol og y Mutations in genes encoding voltage-gated ion channels can cause inherited...
Mutations in KCNQ2 and KCNQ3 voltage-gated potassium channels lead to neonatal epilepsy as a consequ...
Humans have over 70 potassium channel genes, but only some of these have been linked to disease. In ...
AbstractBenign familial neonatal convulsions, an autosomal dominant epilepsy of newborns, are linked...
Yeung SYM, Lange W, Schwake M, Greenwood IA. Expression profile and characterisation of a truncated ...
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...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K+ chann...
Mutations in either KCNQ2 or KCNQ3 underlie benign familial neonatal convulsions (BFNC), an inherite...
KCNQ2 (Kv7.2) and KCNQ3 (Kv7.3) K(+) channels dampen neuronal excitability and their functional impa...
Kv7.1-Kv7.5 (KCNQ1–5) K+ channels are voltage-gated K+ channels with major roles in neurons, muscle ...
The muscarinic-regulated potassium current (M-current), formed by the heteromeric assembly of subuni...
Voltage-gated ion channels encoded by the members of KCNQ gene family (KCNQ2-5) conduct the M-type p...
AbstractHeteromeric KCNQ2/3 potassium channels are thought to underlie the M-current, a subthreshold...
KCNQ2 and KCNQ3 K+ channel subunits underlie the muscarinic-regulated K+ current (I(KM)), a widespre...
rn al o f P hy si ol og y Mutations in genes encoding voltage-gated ion channels can cause inherited...