bioRxiv · 10.1101/2025.01.20.633899
Phosphoinositide- and Collybistin-Dependent Synaptic Clustering of Gephyrin
Abstract
Gephyrin is the main scaffolding protein at inhibitory synapses clustering glycine and GABA type A receptors. At specific GABAergic synapses, the nucleotide exchange factor collybistin recruits gephyrin to the postsynaptic membrane via interaction with phosphoinositides. However, the molecular mechanisms underlying the formation, maintenance and regulation of collybistin-dependent gephyrin clusters remain poorly understood. This study sheds light on the molecular mechanism of gephyrin cluster formation based on gephyrin self-oligomerization induced by collybistin, leading to the formation of a high-molecular weight (>5 MDa) gephyrin-collybistin complex, which is regulated in two ways: First, plasma-membrane phosphoinositides promote complex formation demonstrating their critical role in membrane targeting and stabilization of gephyrin-collybistin clusters at postsynaptic sites. Second, gephyrin phosphorylation at Ser325 abolishes complex formation with collybistin thus impairing collybistin-dependent gephyrin clustering at GABAergic synapses. Collectively, our data demonstrates a molecular mechanism for synaptic clustering of gephyrin which involves collybistin- and phosphoinositide-dependent formation of high-molecular gephyrin oligomers.
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Burdina, N., Liebsch, F., Macha, A., Ortuno Gil, J. L., Frommelt, P., Rais, I., Basler, F., Poepsel, S., Schwarz, G.. 2025-01-21. Phosphoinositide- and Collybistin-Dependent Synaptic Clustering of Gephyrin. https://doi.org/10.1101/2025.01.20.633899
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