SynGAP regulates synaptic plasticity and cognition independently of its catalytic activity

Author:

Araki Yoichi1ORCID,Rajkovich Kacey E.1ORCID,Gerber Elizabeth E.1ORCID,Gamache Timothy R.1ORCID,Johnson Richard C.1ORCID,Tran Thanh Hai N.1ORCID,Liu Bian1ORCID,Zhu Qianwen1,Hong Ingie1ORCID,Kirkwood Alfredo1ORCID,Huganir Richard1ORCID

Affiliation:

1. Department of Neuroscience, Kavli Neuroscience Discovery Institute, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

Abstract

SynGAP is an abundant synaptic GTPase-activating protein (GAP) critical for synaptic plasticity, learning, memory, and cognition. Mutations in SYNGAP1 in humans result in intellectual disability, autistic-like behaviors, and epilepsy. Heterozygous Syngap1 -knockout mice display deficits in synaptic plasticity, learning, and memory and exhibit seizures. It is unclear whether SynGAP imparts structural properties at synapses independently of its GAP activity. Here, we report that inactivating mutations within the GAP domain do not inhibit synaptic plasticity or cause behavioral deficits. Instead, SynGAP modulates synaptic strength by physically competing with the AMPA-receptor-TARP excitatory receptor complex in the formation of molecular condensates with synaptic scaffolding proteins. These results have major implications for developing therapeutic treatments for SYNGAP1 -related neurodevelopmental disorders.

Publisher

American Association for the Advancement of Science (AAAS)

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