The VGCC auxiliary subunit α2δ1 is an extracellular GluA1 interactor and regulates LTP, spatial memory, and seizure susceptibility
Leana-Sandoval, G.; Kolli, A. V.; Sandoval, M. A.; Saavedra, E. M.; Li, K. H.; Chen, L. Y.; Burlingame, A. L.; Ramirez-Franco, J. J.; Diaz-Alonso, J.
Show abstract
Activity-dependent synaptic accumulation of AMPA receptors (AMPARs) and subsequent long-term synaptic strengthening underlie different forms of learning and memory. The AMPAR subunit GluA1 amino-terminal domain is essential for synaptic docking of AMPAR during LTP, but the precise mechanisms involved are not fully understood. Using unbiased proteomics, we identified the epilepsy and intellectual disability-associated VGCC auxiliary subunit 2{delta}1 as a candidate extracellular AMPAR slot. Presynaptic 2{delta}1 deletion in CA3 affects synaptic AMPAR incorporation during long-term potentiation, but not basal synaptic transmission, at CA1 synapses. Consistently, mice lacking 2{delta}1 in CA3 display a specific impairment in CA1-dependent spatial memory, but not in memory tests involving other cortical regions. Decreased seizure susceptibility in mice lacking 2{delta}1 in CA3 suggests a regulation of circuit excitability by 2{delta}1/AMPAR interactions. Our study sheds light on the regulation of activity-dependent AMPAR trafficking, and highlights the synaptic organizing roles of 2{delta}1. Significance statementActivity-dependent accumulation of AMPA receptors (AMPARs) at excitatory synapses and subsequent synaptic strengthening underlies long-term potentiation (LTP), forms of learning and memory, and some epilepsies. The "slot model" posits that postsynaptic scaffolding contain "slots" for AMPAR complexes, and that increased synaptic activity augments the availability of slots to accommodate more receptors, thereby strengthening synapses and enabling LTP. The presence of the GluA1 AMPAR subunit amino-terminal domain (ATD) has recently emerged as an additional requirement for LTP. Here we identify the auxiliary voltage-gated calcium channel subunit 2{delta}1 as a GluA1 ATD interacting protein and provide evidence supporting a role for 2{delta}1 as an extracellular AMPAR slot regulating activity dependent synaptic AMPAR clustering, excitability, and cognitive function.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Epilepsy-linked kinase CDKL5 phosphorylates voltage-gated calcium channel Cav2.3, altering inactivation kinetics and neuronal excitability 98%
- Cytoplasmic accumulation of FUS triggers early behavioral alterations linked to cortical neuronal hyperactivity and defects in inhibitory synapses 97%
- Abnormal AMPAR-mediated synaptic plasticity, cognitive and autistic-like behaviors in a missense Fmr1 mutant mouse model of Fragile X syndrome 97%
Similar papers in this journal
Similar papers in this journal
- A pathogenic missense mutation in kainate receptors elevates dendritic excitability and synaptic integration through dysregulation of SK channels 98%
- Altered A-type potassium channel function impairs dendritic spike initiation and temporammonic long-term potentiation in Fragile X syndrome 96%
- Inhibitory neurons marked by the connectivity molecule Kirrel3 regulate memory precision 95%
Similar papers in this journal
- Common synaptic phenotypes arising from diverse mutations in the human NMDA receptor subunit GluN2A 98%
- Partial inhibition of mitochondrial complex I attenuates neurodegeneration and restores energy homeostasis and synaptic function in a symptomatic Alzheimers mouse model 95%
- Functional Neuroligin-2-MDGA1 interactions differentially regulate synaptic GABAARs and cytosolic gephyrin aggregation 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.