Bang sensitive (BS) Drosophila mutants display characteristic seizure-like phenotypes resembling, in some aspects, those of human seizure disorders such as epilepsy. The BS mutant parabss1, caused by a gain-of-function mutation of the voltage-gated Na+ channel gene, is extremely seizure-sensitive with phenotypes that have proven difficult to ameliorate by anti-epileptic drug feeding or by seizure-suppressor mutation. It has been presented as a model for intractable human epilepsy. Here we show that cacophony (cacTS2), a mutation of the Drosophila presynaptic Ca++ channel α1 subunit gene, is a particularly potent seizure-suppressor mutation, reverting seizure-like phenotypes for parabss1 and other BS mutants. Seizure-like phenotypes for para...
Mutations in pre-synaptic voltage-gated calcium channels can lead to familial hemiplegic migraine ty...
Mutations in pre-synaptic voltage-gated calcium channels can lead to familial hemiplegic migraine ty...
Synapse formation is tightly associated with neuronal excitability. We found striking synaptic overg...
Bang sensitive (BS) Drosophila mutants display characteristic seizure-like phenotypes resembling, in...
Bang sensitive (BS) Drosophila mutants display characteristic seizure-like phenotypes resembling, in...
Bang sensitive (BS) Drosophila mutants display characteristic seizure-like phenotypes resembling, in...
While thousands of epilepsy-causing mutations have been identified throughout the SCN1A gene encodin...
Seizure and epilepsy disorders are debilitating neurological disorders characterized by recurrent, h...
Seizure and epilepsy disorders are debilitating neurological disorders characterized by recurrent, h...
Seizures are defined by abnormal and synchronous firing of neurons within the central nervous system...
This paper reviews Drosophila voltage-gated Na(+) channel mutations encoded by the para (paralytic) ...
Mutations in the voltage-gated sodium channel gene SCN1A are associated with human epilepsy disorder...
Mutations in the voltage-gated sodium channel gene SCN1A are associated with human epilepsy disorder...
Epilepsy and seizure disorders affect a large portion of the population. These disorders are complex...
Over 40 missense mutations in the human SCN1A sodium channel gene are linked to an epilepsy syndrome...
Mutations in pre-synaptic voltage-gated calcium channels can lead to familial hemiplegic migraine ty...
Mutations in pre-synaptic voltage-gated calcium channels can lead to familial hemiplegic migraine ty...
Synapse formation is tightly associated with neuronal excitability. We found striking synaptic overg...
Bang sensitive (BS) Drosophila mutants display characteristic seizure-like phenotypes resembling, in...
Bang sensitive (BS) Drosophila mutants display characteristic seizure-like phenotypes resembling, in...
Bang sensitive (BS) Drosophila mutants display characteristic seizure-like phenotypes resembling, in...
While thousands of epilepsy-causing mutations have been identified throughout the SCN1A gene encodin...
Seizure and epilepsy disorders are debilitating neurological disorders characterized by recurrent, h...
Seizure and epilepsy disorders are debilitating neurological disorders characterized by recurrent, h...
Seizures are defined by abnormal and synchronous firing of neurons within the central nervous system...
This paper reviews Drosophila voltage-gated Na(+) channel mutations encoded by the para (paralytic) ...
Mutations in the voltage-gated sodium channel gene SCN1A are associated with human epilepsy disorder...
Mutations in the voltage-gated sodium channel gene SCN1A are associated with human epilepsy disorder...
Epilepsy and seizure disorders affect a large portion of the population. These disorders are complex...
Over 40 missense mutations in the human SCN1A sodium channel gene are linked to an epilepsy syndrome...
Mutations in pre-synaptic voltage-gated calcium channels can lead to familial hemiplegic migraine ty...
Mutations in pre-synaptic voltage-gated calcium channels can lead to familial hemiplegic migraine ty...
Synapse formation is tightly associated with neuronal excitability. We found striking synaptic overg...