Clarinet (CLA-1), a novel active zone protein required for synaptic vesicle clustering and release.

Xuan, Zhao; Manning, Laura; Nelson, Jessica; Richmond, Janet E; Colón-Ramos, Daniel A; Shen, Kang; Kurshan, Peri T · Elife · 2017

basic_science · Level V

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Abstract

Active zone proteins cluster synaptic vesicles at presynaptic terminals and coordinate their release. In forward genetic screens, we isolated a novel <i>Caenorhabditis elegans</i> active zone gene, <i>clarinet</i> (<i>cla-1</i>). <i>cla-1</i> mutants exhibit defects in synaptic vesicle clustering, active zone structure and synapse number. As a result, they have reduced spontaneous vesicle release and increased synaptic depression. <i>cla-1</i> mutants show defects in vesicle distribution near the presynaptic dense projection, with fewer undocked vesicles contacting the dense projection and more docked vesicles at the plasma membrane. <i>cla-1</i> encodes three isoforms containing common C-terminal PDZ and C2 domains with homology to vertebrate active zone proteins Piccolo and RIM. The C-termini of all isoforms localize to the active zone. Specific loss of the ~9000 amino acid long isoform results in vesicle clustering defects and increased synaptic depression. Our data indicate that specific isoforms <i>of clarinet</i> serve distinct functions, regulating synapse development, vesicle clustering and release.

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