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The Stability of the Primed Pool of Synaptic Vesicles and the Clamping of Spontaneous Neurotransmitter Release Rely on the Integrity of the C-terminal Half of the SNARE Domain of Syntaxin-1A

Overview
Journal Elife
Specialty Biology
Date 2024 Mar 21
PMID 38512129
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Abstract

The SNARE proteins are central in membrane fusion and, at the synapse, neurotransmitter release. However, their involvement in the dual regulation of the synchronous release while maintaining a pool of readily releasable vesicles remains unclear. Using a chimeric approach, we performed a systematic analysis of the SNARE domain of STX1A by exchanging the whole SNARE domain or its N- or C-terminus subdomains with those of STX2. We expressed these chimeric constructs in STX1-null hippocampal mouse neurons. Exchanging the C-terminal half of STX1's SNARE domain with that of STX2 resulted in a reduced RRP accompanied by an increased release rate, while inserting the C-terminal half of STX1's SNARE domain into STX2 leads to an enhanced priming and decreased release rate. Additionally, we found that the mechanisms for clamping spontaneous, but not for Ca-evoked release, are particularly susceptible to changes in specific residues on the outer surface of the C-terminus of the SNARE domain of STX1A. Particularly, mutations of D231 and R232 affected the fusogenicity of the vesicles. We propose that the C-terminal half of the SNARE domain of STX1A plays a crucial role in the stabilization of the RRP as well as in the clamping of spontaneous synaptic vesicle fusion through the regulation of the energetic landscape for fusion, while it also plays a covert role in the speed and efficacy of Ca-evoked release.

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References
1.
Peng L, Liu H, Ruan H, Tepp W, Stoothoff W, Brown R . Cytotoxicity of botulinum neurotoxins reveals a direct role of syntaxin 1 and SNAP-25 in neuron survival. Nat Commun. 2013; 4:1472. PMC: 4052923. DOI: 10.1038/ncomms2462. View

2.
Vardar G, Salazar-Lazaro A, Brockmann M, Weber-Boyvat M, Zobel S, Kumbol V . Reexamination of N-terminal domains of syntaxin-1 in vesicle fusion from central murine synapses. Elife. 2021; 10. PMC: 8416022. DOI: 10.7554/eLife.69498. View

3.
Zhou P, Pang Z, Yang X, Zhang Y, Rosenmund C, Bacaj T . Syntaxin-1 N-peptide and Habc-domain perform distinct essential functions in synaptic vesicle fusion. EMBO J. 2012; 32(1):159-71. PMC: 3545302. DOI: 10.1038/emboj.2012.307. View

4.
Chang S, Trimbuch T, Rosenmund C . Synaptotagmin-1 drives synchronous Ca-triggered fusion by CB-domain-mediated synaptic-vesicle-membrane attachment. Nat Neurosci. 2017; 21(1):33-40. PMC: 5742540. DOI: 10.1038/s41593-017-0037-5. View

5.
Xu J, Mashimo T, Sudhof T . Synaptotagmin-1, -2, and -9: Ca(2+) sensors for fast release that specify distinct presynaptic properties in subsets of neurons. Neuron. 2007; 54(4):567-81. DOI: 10.1016/j.neuron.2007.05.004. View