Kv10.1 (Eag1), member of the Kv10 family of voltage-gated potassium channels, is preferentially expressed in adult brain. The aim of the present study was to unravel the functional role of Kv10.1 in the brain by generating knockout mice, where the voltage sensor and pore region of Kv10.1 were removed to render non-functional pro-teins through deletion of exon 7 of the KCNH1 gene using the ‘3 Lox P strategy’. Kv10.1-deficient mice show no obvious alterations during embryogenesis and develop normally to adulthood; cortex, hippocampus and cere-bellum appear anatomically normal. Other tests, including general health screen, sensorimotor functioning and gating, anxiety, social behaviour, learning and memory did not show any functional aberration...
Background Mutations in the Shaker-like voltage-gated potassium channel Kv1.1 are kn...
Developmental and epileptic encephalopathies (DEE) are a group of severe epilepsies that usually pre...
Bioelectric signaling is evolutionarily conserved and maintained in all living cells through the sel...
Kv10.1 (Eag1), member of the Kv10 family of voltage-gated potassium channels, is preferentially expr...
K(v)10.1 (Eag1), member of the K(v)10 family of voltage-gated potassium channels, is preferentially ...
K(v)10.1 (Eag1), member of the K(v)10 family of voltage-gated potassium channels, is preferentially ...
K(v)10.1 (Eag1), member of the K(v)10 family of voltage-gated potassium channels, is preferentially ...
K(v)10.1 (Eag1), member of the K(v)10 family of voltage-gated potassium channels, is preferentially ...
Kv10.1 (Eag1), member of the Kv10 family of voltage-gated potassium channels, is preferentially expr...
The KCNH1 gene encodes the Kv10.1 (Eag1) ion channel, a member of the EAG (ether-a-go-go) family of ...
Voltage-gated potassium (Kv) channels are important regulators of normal neuronal function. In neuro...
Voltage-gated potassium (Kv) channels are important regulators of normal neuronal function. In neuro...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
Background Mutations in the Shaker-like voltage-gated potassium channel Kv1.1 are kn...
Developmental and epileptic encephalopathies (DEE) are a group of severe epilepsies that usually pre...
Bioelectric signaling is evolutionarily conserved and maintained in all living cells through the sel...
Kv10.1 (Eag1), member of the Kv10 family of voltage-gated potassium channels, is preferentially expr...
K(v)10.1 (Eag1), member of the K(v)10 family of voltage-gated potassium channels, is preferentially ...
K(v)10.1 (Eag1), member of the K(v)10 family of voltage-gated potassium channels, is preferentially ...
K(v)10.1 (Eag1), member of the K(v)10 family of voltage-gated potassium channels, is preferentially ...
K(v)10.1 (Eag1), member of the K(v)10 family of voltage-gated potassium channels, is preferentially ...
Kv10.1 (Eag1), member of the Kv10 family of voltage-gated potassium channels, is preferentially expr...
The KCNH1 gene encodes the Kv10.1 (Eag1) ion channel, a member of the EAG (ether-a-go-go) family of ...
Voltage-gated potassium (Kv) channels are important regulators of normal neuronal function. In neuro...
Voltage-gated potassium (Kv) channels are important regulators of normal neuronal function. In neuro...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
Background Mutations in the Shaker-like voltage-gated potassium channel Kv1.1 are kn...
Developmental and epileptic encephalopathies (DEE) are a group of severe epilepsies that usually pre...
Bioelectric signaling is evolutionarily conserved and maintained in all living cells through the sel...