Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional consequences of pathogenic variants in early-onset KCNT1 epilepsy. Methods: We identified a cohort of 31 patients with epilepsy of infancy with migrating focal seizures (EIMFS) and screened for variants in KCNT1 using direct Sanger sequencing, a multiple-gene next-generation sequencing panel, and whole-exome sequencing. Additional patients with non-EIMFS early-onset epilepsy in whom we identified KCNT1 variants on local diagnostic multiple gene panel testing were also included. When possible, we performed homology modeling to predict the putative effects of variants on protein structure and function. We undertook electrophysiologic assessment of ...
Background: KCNC2 encodes Kv3.2, a member of the Shaw-related (Kv3) voltage-gated potassium channel ...
OBJECTIVE: To analyze clinical phenotypes associated with KCNC1 variants other than the Progressive ...
Abstract: Variants in KCNT1, encoding a sodium-gated potassium channel (subfamily T member 1), have ...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
OBJECTIVE: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
The fulltext of this publication will be made publicly available after relevant embargo periods have...
OBJECTIVE: Mutations in KCNT1 have been implicated in autosomal dominant nocturnal frontal lobe epil...
Variants in KCNT1, encoding a sodium-gated potassium channel (subfamily T member 1), have been assoc...
peer reviewedBackground: KCNC2 encodes Kv3.2, a member of the Shaw-related (Kv3) voltage-gated potas...
Background: KCNC2 encodes Kv3.2, a member of the Shaw-related (Kv3) voltage-gated potassium channel ...
OBJECTIVE: To analyze clinical phenotypes associated with KCNC1 variants other than the Progressive ...
Abstract: Variants in KCNT1, encoding a sodium-gated potassium channel (subfamily T member 1), have ...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
OBJECTIVE: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
Objective: To characterize the phenotypic spectrum, molecular genetic findings, and functional conse...
The fulltext of this publication will be made publicly available after relevant embargo periods have...
OBJECTIVE: Mutations in KCNT1 have been implicated in autosomal dominant nocturnal frontal lobe epil...
Variants in KCNT1, encoding a sodium-gated potassium channel (subfamily T member 1), have been assoc...
peer reviewedBackground: KCNC2 encodes Kv3.2, a member of the Shaw-related (Kv3) voltage-gated potas...
Background: KCNC2 encodes Kv3.2, a member of the Shaw-related (Kv3) voltage-gated potassium channel ...
OBJECTIVE: To analyze clinical phenotypes associated with KCNC1 variants other than the Progressive ...
Abstract: Variants in KCNT1, encoding a sodium-gated potassium channel (subfamily T member 1), have ...