RRC ID 57104
著者 Weiss S, Melom JE, Ormerod KG, Zhang YV, Littleton JT.
タイトル Glial Ca2+signaling links endocytosis to K+ buffering around neuronal somas to regulate excitability.
ジャーナル Elife
Abstract Glial-neuronal signaling at synapses is widely studied, but how glia interact with neuronal somas to regulate their activity is unclear. Drosophila cortex glia are restricted to brain regions devoid of synapses, providing an opportunity to characterize interactions with neuronal somas. Mutations in the cortex glial NCKXzydeco elevate basal Ca2+, predisposing animals to seizure-like behavior. To determine how cortex glial Ca2+ signaling controls neuronal excitability, we performed an in vivo modifier screen of the NCKXzydeco seizure phenotype. We show that elevation of glial Ca2+ causes hyperactivation of calcineurin-dependent endocytosis and accumulation of early endosomes. Knockdown of sandman, a K2P channel, recapitulates NCKXzydeco seizures. Indeed, sandman expression on cortex glial membranes is substantially reduced in NCKXzydeco mutants, indicating enhanced internalization of sandman predisposes animals to seizures. These data provide an unexpected link between glial Ca2+ signaling and the well-known role of glia in K+ buffering as a key mechanism for regulating neuronal excitability.
巻・号 8
公開日 2019-4-26
DOI 10.7554/eLife.44186
PII 44186
PMID 31025939
PMC PMC6510531
MeSH Animals Calcium / metabolism Calcium Signaling / genetics Cell Communication / genetics Cerebral Cortex / metabolism Cerebral Cortex / pathology Cortical Excitability / genetics* Drosophila Proteins / genetics* Drosophila melanogaster / genetics Endocytosis / genetics Endosomes / genetics Humans Mutation / genetics Neuroglia / metabolism Neuroglia / pathology Neurons / metabolism* Neurons / pathology Potassium / metabolism Potassium Channels / genetics* Seizures / genetics* Seizures / pathology Sodium-Calcium Exchanger / genetics* Synapses / genetics Synapses / pathology
IF 7.551
引用数 7
リソース情報
ショウジョウバエ DGRC#112830