A presynaptic spectrin network controls active zone assembly and neurotransmitter release
Wang, Q.; Friend, L.; Vicidomini, R.; Han, T. H.; Nguyen, P.; Ting, C.-Y.; Serpe, M.
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We have previously reported that Drosophila Tenectin (Tnc) recruits PS2/{beta}PS integrin to ensure structural and functional integrity at larval NMJs (Wang et al., 2018). In muscles, Tnc/integrin engages the spectrin network to regulate the size and architecture of synaptic boutons. In neurons, Tnc/integrin controls neurotransmitter release. Here we show that presynaptic Tnc/integrin modulates the synaptic accumulation of key active zone components, including the Ca2+ channel Cac and the active zone scaffold Brp. Presynaptic -Spectrin appears to be both required and sufficient for the recruitment of Cac and Brp. We visualized the endogenous -Spectrin and found that Tnc controls spectrin recruitment at synaptic terminals. Thus, Tnc/integrin anchors the presynaptic spectrin network and ensures the proper assembly and function of the active zones. Since pre- and postsynaptic Tnc/integrin limit each other, we hypothesize that this pathway links dynamic changes within the synaptic cleft to changes in synaptic structure and function.
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