4.8 Article

A C1-C2 Module in Munc13 Inhibits Calcium-Dependent Neurotransmitter Release

期刊

NEURON
卷 95, 期 3, 页码 577-+

出版社

CELL PRESS
DOI: 10.1016/j.neuron.2017.07.015

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资金

  1. NIH [R01-GM095674]
  2. MSTP [T32GM007739]
  3. Australian Research Council [DP160100849]
  4. NHMRC [APP1122351]

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Almost all known forms of fast chemical synaptic transmission require the synaptic hub protein Munc13. This essential protein has also been implicated in mediating several forms of use-dependent plasticity, but the mechanisms by which it controls vesicle fusion and plasticity are not well understood. Using the C. elegans Munc13 ortholog UNC-13, we show that deletion of the C2B domain, the most highly conserved domain of Munc13, enhances calcium-dependent exocytosis downstream of vesicle priming, revealing a novel autoinhibitory role for the C2B. Furthermore, C2B inhibition is relieved by calcium binding to C2B, while the neighboring C1 domain acts together with C2B to stabilize the auto-inhibited state. Selective disruption of Munc13 autoinhibition profoundly impacts nervous system function in vivo. Thus, C1-C2B exerts a basal inhibition on Munc13 in the primed state, permitting calcium-and lipid-dependent control of C1-C2B to modulate synaptic strength.

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