Over 150 mutations in the SCN2A gene, which encodes the neuronal Nav1.2 protein, have been implicated in human epilepsy cases. Of these, R1882Q and R853Q are two of the most commonly reported mutations. This study utilized voltage-clamp electrophysiology to characterize the biophysical effects of the R1882Q and R853Q mutations on the hNav1.2 channel, including their effects on resurgent current and gating pore current, which are not typically investigated in the study of Nav1.2 channel mutations. HEK cells transiently transfected with DNA encoding either wild-type (WT) or mutant hNav1.2 revealed that the R1882Q mutation induced a gain-of-function phenotype, including slowed fast inactivation, depolarization of the voltage dependence of inac...
The human sodium channel family includes seven neuronal channels that are essential for the initiati...
Over 1250 mutations in SCN1A, the Nav1.1 voltage-gated sodium channel gene, are associated with a va...
AbstractEpilepsy is a common neurological condition that reflects neuronal hyperexcitability arising...
While most cases of epilepsy respond well to common antiepileptic drugs, many genetically-driven epi...
SCN8A is a novel causal gene for early infantile epileptic encephalopathy. It is well accepted that ...
Variants of the SCN1A gene encoding the neuronal voltage-gated sodium channel NaV1.1 cause over 85% ...
AbstractRare de novo mutations of sodium channels are thought to be an important cause of sporadic e...
AbstractEpilepsy is a paroxysmal neurological disorder resulting from abnormal cellular excitability...
identified in families with generalized epilepsy with febrile seizures plus (GEFS+). A novel mutatio...
Epilepsies are the results of abnormal brain hyperactivities caused by brain injury, drug intoxicati...
A mutation in the sodium channel SCN1A was identified in a small Italian family with dominantly inhe...
Nine mutations that cause generalized epilepsy with febrile seizures plus have been identified in th...
The number of mutations in the voltage-gated sodium channel Nav1.1, encoded by SCN1A, that have been...
Pathogenic heterozygous variants in SCN2A, which encodes the neuronal sodium channel NaV1.2, cause d...
Genetic epilepsy occurs as a result of mutations in either a single gene or an interplay of differen...
The human sodium channel family includes seven neuronal channels that are essential for the initiati...
Over 1250 mutations in SCN1A, the Nav1.1 voltage-gated sodium channel gene, are associated with a va...
AbstractEpilepsy is a common neurological condition that reflects neuronal hyperexcitability arising...
While most cases of epilepsy respond well to common antiepileptic drugs, many genetically-driven epi...
SCN8A is a novel causal gene for early infantile epileptic encephalopathy. It is well accepted that ...
Variants of the SCN1A gene encoding the neuronal voltage-gated sodium channel NaV1.1 cause over 85% ...
AbstractRare de novo mutations of sodium channels are thought to be an important cause of sporadic e...
AbstractEpilepsy is a paroxysmal neurological disorder resulting from abnormal cellular excitability...
identified in families with generalized epilepsy with febrile seizures plus (GEFS+). A novel mutatio...
Epilepsies are the results of abnormal brain hyperactivities caused by brain injury, drug intoxicati...
A mutation in the sodium channel SCN1A was identified in a small Italian family with dominantly inhe...
Nine mutations that cause generalized epilepsy with febrile seizures plus have been identified in th...
The number of mutations in the voltage-gated sodium channel Nav1.1, encoded by SCN1A, that have been...
Pathogenic heterozygous variants in SCN2A, which encodes the neuronal sodium channel NaV1.2, cause d...
Genetic epilepsy occurs as a result of mutations in either a single gene or an interplay of differen...
The human sodium channel family includes seven neuronal channels that are essential for the initiati...
Over 1250 mutations in SCN1A, the Nav1.1 voltage-gated sodium channel gene, are associated with a va...
AbstractEpilepsy is a common neurological condition that reflects neuronal hyperexcitability arising...