4.7 Article

UNC-18 and Tomosyn Antagonistically Control Synaptic Vesicle Priming Downstream of UNC-13 in Caenorhabditis elegans

Journal

JOURNAL OF NEUROSCIENCE
Volume 37, Issue 36, Pages 8797-8815

Publisher

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.0338-17.2017

Keywords

C. elegans; exocytosis; membrane fusion; Munc18; SNARE; synapse

Categories

Funding

  1. Natural Sciences and Engineering Research Council of Canada [RGPIN-2015-06438, 2014-06471, RGPIN-2016-04574]
  2. Heart and Stroke Foundation of Ontario [0171]
  3. Canadian Institute of Health Research [MOP-93665, 130573, MOP-93619, 123250]
  4. NIH [R35 NS097333, NS037200, NS049044]
  5. National Natural Science Foundation of China [31671052]
  6. Junior Thousand Talents Program of China
  7. Wuhan Morning Light Plan of Youth Science and Technology [2017050304010295]
  8. NIH Office of Research Infrastructure Programs [P40 OD010440]
  9. Parkinson's UK [K-1405] Funding Source: researchfish

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Munc18-1/UNC-18 is believed to prime SNARE-mediated membrane fusion, yet the underlying mechanisms remain enigmatic. Here, we examine how potential gain-of-function mutations of Munc18-1/UNC-18 affect locomotory behavior and synaptic transmission, and how Munc18-1-mediated priming is related to Munc13-1/UNC-13 and Tomosyn/TOM-1, positive and negative SNARE regulators, respectively. We show that a Munc18-1(P335A)/UNC-18(P334A) mutation leads to significantly increased locomotory activity and acetylcholine release in Caenorhabditis elegans, as well as enhanced synaptic neurotransmission in cultured mammalian neurons. Importantly, similar to tom-1 null mutants, unc-18(P334A) mutants partially bypass the requirement of UNC-13. Moreover, unc-18( P334A) and tom-1 null mutations confer a strong synergy in suppressing the phenotypes of unc-13 mutants. Through biochemical experiments, we demonstrate that Munc18-1( P335A) exhibits enhanced activity in SNARE complex formation as well as in binding to the preformed SNARE complex, and partially bypasses the Munc13-1 requirement in liposome fusion assays. Our results indicate that Munc18-1/UNC-18 primes vesicle fusion downstream of Munc13-1/UNC-13 by templating SNARE complex assembly and acts antagonistically with Tomosyn/TOM-1.

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