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Updated: Aug 4, 2026

Presynaptically Silent Synapses Studied with Light Microscopy
Published on: January 4, 2010
Disruption of syntaxin-mediated protein interactions blocks neurotransmitter secretion
V O'Connor1, C Heuss, W M De Bello
1Department of Neurochemistry, Max-Planck-Institute for Brain Research, 60528 Frankfurt, Germany.
Abstract:
The membrane protein syntaxin participates in several protein-protein interactions that have been implicated in neurotransmitter release. To probe the physiological importance of these interactions, we microinjected into the squid giant presynaptic terminal botulinum toxin C1, which cleaves syntaxin, and the H3 domain of syntaxin, which mediates binding to other proteins. Both reagents inhibited synaptic transmission yet did not affect the number or distribution of synaptic vesicles at the presynaptic active zone. Recombinant H3 domain inhibited the interactions between syntaxin and SNAP-25 that underlie the formation of stable SNARE complexes in vitro. These data support the notion that syntaxin-mediated SNARE complexes are necessary for docked synaptic vesicles to fuse.
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