Back

Splicing of the SynGAP Carboxyl-Terminus Enables Isoform-Specific Tuning of NMDA Receptor Signaling Linked to Cognitive Function

Kilinc, M.; Creson, T. K.; Rojas, C.; Maity, S.; Le, A. A.; Lauterborn, J.; Wilkinson, B.; Hartel, N.; Graham, N. A.; Reich, A.; Gou, G.; Araki, Y.; Bayes, A.; Coba, M. P.; Lynch, G.; Miller, C. A.; Rumbaugh, G.

2020-01-19 neuroscience
10.1101/2020.01.18.911487 bioRxiv
Show abstract

SynGAP-1 is a splice variant of the neurodevelopmental disorder risk gene, SYNGAP1/Syngap1. 1 encodes the C-terminal PDZ binding motif (PBM) that promotes liquid-liquid phase separation, a candidate process for postsynaptic density organization within excitatory synapses. However, it remains unknown how the endogenous SynGAP PBM regulates synapse properties and related cognitive functions. We found that a major PBM function in mice is to limit the mobility of SynGAP-1 in response to NMDA receptor activation. Genetic disruption of the PBM increased SynGAP-1 mobility to levels consistent with other non-PBM-containing C-terminal isoforms. This resulted in a lowering of the threshold for NMDA receptor-dependent signaling required for plasticity, leading to aberrant strengthening of excitatory synapses in spontaneously active neurons. PBM-deficient animals also exhibited a lower seizure threshold, disrupted LTP, and impaired cognition. Thus, the PBM enables isoform-specific SynGAP gating of NMDA receptor function, a mechanism linking synaptic signaling dynamics to network excitability and cognition.

Matching journals

The top 2 journals account for 50% of the predicted probability mass.

50% of probability mass above

"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.