Background KCNC2 encodes a member of the shaw-related voltage-gated potassium channel family (KV3.2), which are important for sustained high-frequency firing and optimized energy efficiency of action potentials in the brain.Methods Individuals with KCNC2 variants detected by exome sequencing were selected for clinical, further genetic and functional analysis. The cases were referred through clinical and research collaborations in our study. Four de novo variants were examined electrophysiologically in Xenopus laevis oocytes.Results We identified novel KCNC2 variants in 27 patients with various forms of epilepsy. Functional analysis demonstrated gain-of-function in severe and loss-of-function in milder phenotypes as the underlying pathomecha...
© 2017 the authors. KCNQ2 potassium channels are critical for normal brain function, as both loss-of...
OBJECTIVE: Heterozygous variants in KCNQ2 or, more rarely, KCNQ3 genes are responsible for early-on...
Early identification of de novo KCNQ2 variants in patients with epilepsy raises prognostic issues to...
Background and ObjectivesKCNC2 encodes Kv3.2, a member of the Shaw-related (Kv3) voltage-gated potas...
Background KCNC2 encodes a member of the shaw-related voltage-gated potassium channel family (KV3.2)...
Background: KCNC2 encodes Kv3.2, a member of the Shaw-related (Kv3) voltage-gated potassium channel ...
KCNQ2-encoded Kv7.2 subunits play a critical role in balancing neuronal excitability. Mutations in K...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
KCNQ5 is a highly conserved gene encoding an important channel for neuronal function; it is widely e...
Kv7.2 subunits encoded by the KCNQ2 gene provide a major contribution to the M-current (IKM), a volt...
Mutations in the KCNQ2 gene encoding for voltage-gated potassium channel subunits have been found i...
© 2018 Dr. Umesh NairThe worldwide prevalence of epilepsy is between 2-3 % with many unmet clinical ...
Gain-of-function (GOF) pathogenic variants of KCNT1, the gene encoding the largest known potassium c...
© 2017 the authors. KCNQ2 potassium channels are critical for normal brain function, as both loss-of...
OBJECTIVE: Heterozygous variants in KCNQ2 or, more rarely, KCNQ3 genes are responsible for early-on...
Early identification of de novo KCNQ2 variants in patients with epilepsy raises prognostic issues to...
Background and ObjectivesKCNC2 encodes Kv3.2, a member of the Shaw-related (Kv3) voltage-gated potas...
Background KCNC2 encodes a member of the shaw-related voltage-gated potassium channel family (KV3.2)...
Background: KCNC2 encodes Kv3.2, a member of the Shaw-related (Kv3) voltage-gated potassium channel ...
KCNQ2-encoded Kv7.2 subunits play a critical role in balancing neuronal excitability. Mutations in K...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
KCNQ5 is a highly conserved gene encoding an important channel for neuronal function; it is widely e...
Kv7.2 subunits encoded by the KCNQ2 gene provide a major contribution to the M-current (IKM), a volt...
Mutations in the KCNQ2 gene encoding for voltage-gated potassium channel subunits have been found i...
© 2018 Dr. Umesh NairThe worldwide prevalence of epilepsy is between 2-3 % with many unmet clinical ...
Gain-of-function (GOF) pathogenic variants of KCNT1, the gene encoding the largest known potassium c...
© 2017 the authors. KCNQ2 potassium channels are critical for normal brain function, as both loss-of...
OBJECTIVE: Heterozygous variants in KCNQ2 or, more rarely, KCNQ3 genes are responsible for early-on...
Early identification of de novo KCNQ2 variants in patients with epilepsy raises prognostic issues to...