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Drosophilaas a Model for Intractable Epilepsy:GilgameshSuppresses Seizures inparabss1Heterozygote Flies

Drosophilaas a Model for Intractable Epilepsy:GilgameshSuppresses Seizures inparabss1Heterozygote Flies
AbstractIntractable epilepsies, that is, seizure disorders that do not respond to currently available therapies, are difficult, often tragic, neurological disorders. Na+ channelopathies have been implicated in some intractable epilepsies, including Dravet syndrome (Dravet 1978), but little progress has been forthcoming in therapeutics. Here we examine a Drosophila model for intractable epilepsy, the Na+ channel gain-of-function mutant parabss1 that resembles Dravet syndrome in some aspects (parker et al. 2011a). In particular, we identify second-site mutations that interact with parabss1, seizure enhancers, and seizure suppressors. We describe one seizure-enhancer mutation named charlatan (chn). The chn gene normally encodes an Neuron-Restrictive Silencer Factor/RE1-Silencing Transcription factor transcriptional repressor of neuronal-specific genes. We identify a second-site seizure-suppressor mutation, gilgamesh (gish), that reduces the severity of several seizure-like phenotypes of parabss1/+ heterozygotes. The gish gene normally encodes the Drosophila ortholog of casein kinase CK1g3, a member of the CK1 family of serine-threonine kinases. We suggest that CK1g3 is an unexpected but promising new target for seizure therapeutics.
- University of California, Berkeley United States
Heterozygote, Casein Kinase I, Wnt1 Protein, Investigations, Sodium Channels, Repressor Proteins, Wnt Proteins, Disease Models, Animal, Phenotype, Seizures, Mutation, Animals, Drosophila Proteins, Drosophila, RNA Interference, Signal Transduction, Transcription Factors
Heterozygote, Casein Kinase I, Wnt1 Protein, Investigations, Sodium Channels, Repressor Proteins, Wnt Proteins, Disease Models, Animal, Phenotype, Seizures, Mutation, Animals, Drosophila Proteins, Drosophila, RNA Interference, Signal Transduction, Transcription Factors
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