International audienceObjective: Kv7 channels mediate the voltage-gated M-type potassium current. Reduction of M current due to KCNQ2 mutations causes early onset epileptic encephalopa-thies (EOEEs). Mutations in STXBP1 encoding the syntaxin binding protein 1 can produce a phenotype similar to that of KCNQ2 mutations, suggesting a possible link between STXBP1 and Kv7 channels. These channels are known to be modulated by syntaxin-1A (Syn-1A) that binds to the C-terminal domain of the Kv7.2 subunit and strongly inhibits M current. Here, we investigated whether STXBP1could prevent this inhibitory effect of Syn-1A and analyzed the consequences of two mutations in STXBP1 associated with EOEEs. Methods: Electrophysiologic analysis of M currents m...
Objective: Numerous pathogenic variants in KCNB1, which encodes the voltage-gated potassium channel,...
Developmental and epileptic encephalopathies (DEE) are a group of severe epilepsies that usually pre...
Key pointsKV 1.2 channels, encoded by the KCNA2 gene, regulate neuronal excitability by conducting K...
International audienceObjective: Kv7 channels mediate the voltage-gated M-type potassium current. Re...
International audienceMutations in the KCNQ2 gene encoding the voltage-dependent potassium M channel...
Objective: Numerous pathogenic variants in KCNB1, which encodes the voltage-gated potassium channel,...
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...
Affecting more than 65 million people worldwide, epilepsy is the fourth most common neurological dis...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K(+) cha...
International audienceMutations in the KCNQ2 gene encoding the voltage-gated potassium channel subun...
International audienceDevelopmental and epileptic encephalopathies (DEEs) are neurodevelopmental dis...
The epileptic encephalopathies are a group of highly heterogeneous genetic disorders. The majority o...
Significance: A child with epilepsy has a previously unreported, heterozygous mutation in KCNA2, the...
Kv7.2 subunits encoded by the KCNQ2 gene provide a major contribution to the M-current (IKM), a volt...
Objective: Numerous pathogenic variants in KCNB1, which encodes the voltage-gated potassium channel,...
Developmental and epileptic encephalopathies (DEE) are a group of severe epilepsies that usually pre...
Key pointsKV 1.2 channels, encoded by the KCNA2 gene, regulate neuronal excitability by conducting K...
International audienceObjective: Kv7 channels mediate the voltage-gated M-type potassium current. Re...
International audienceMutations in the KCNQ2 gene encoding the voltage-dependent potassium M channel...
Objective: Numerous pathogenic variants in KCNB1, which encodes the voltage-gated potassium channel,...
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...
Affecting more than 65 million people worldwide, epilepsy is the fourth most common neurological dis...
The KCNQ2 gene product, Kv7.2, is a subunit of the M-channel, a low-threshold voltage-gated K(+) cha...
International audienceMutations in the KCNQ2 gene encoding the voltage-gated potassium channel subun...
International audienceDevelopmental and epileptic encephalopathies (DEEs) are neurodevelopmental dis...
The epileptic encephalopathies are a group of highly heterogeneous genetic disorders. The majority o...
Significance: A child with epilepsy has a previously unreported, heterozygous mutation in KCNA2, the...
Kv7.2 subunits encoded by the KCNQ2 gene provide a major contribution to the M-current (IKM), a volt...
Objective: Numerous pathogenic variants in KCNB1, which encodes the voltage-gated potassium channel,...
Developmental and epileptic encephalopathies (DEE) are a group of severe epilepsies that usually pre...
Key pointsKV 1.2 channels, encoded by the KCNA2 gene, regulate neuronal excitability by conducting K...