A synaptotagmin suppressor screen indicates SNARE binding controls the timing and Ca<sup>2+</sup> cooperativity of vesicle fusion.

Guan, Zhuo; Bykhovskaia, Maria; Jorquera, Ramon A; Sutton, Roger Bryan; Akbergenova, Yulia; Littleton, J Troy · Elife · 2017

basic_science · Level V

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Abstract

The synaptic vesicle Ca<sup>2+</sup> sensor Synaptotagmin binds Ca<sup>2+</sup> through its two C2 domains to trigger membrane interactions. Beyond membrane insertion by the C2 domains, other requirements for Synaptotagmin activity are still being elucidated. To identify key residues within Synaptotagmin required for vesicle cycling, we took advantage of observations that mutations in the C2B domain Ca<sup>2+</sup>-binding pocket dominantly disrupt release from invertebrates to humans. We performed an intragenic screen for suppressors of lethality induced by expression of Synaptotagmin C2B Ca<sup>2+</sup>-binding mutants in <i>Drosophila</i>. This screen uncovered essential residues within Synaptotagmin that suggest a structural basis for several activities required for fusion, including a C2B surface implicated in SNARE complex interaction that is required for rapid synchronization and Ca<sup>2+</sup> cooperativity of vesicle release. Using electrophysiological, morphological and computational characterization of these mutants, we propose a sequence of molecular interactions mediated by Synaptotagmin that promote Ca<sup>2+</sup> activation of the synaptic vesicle fusion machinery.

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