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Bruchpilot promotes active zone assembly, Ca2+ channel clustering, and vesicle release
ISSN
0036-8075
Date Issued
2006
Author(s)
Kittel, Robert J.
Rasse, T. M.
Fouquet, W.
Schmid, Andreas
Wagh, D. A.
Pawlu, C.
Buchner, E.
Heckmann, M.
Sigrist, Stephan J.
DOI
10.1126/science.1126308
Abstract
The molecular organization of presynaptic active zones during calcium influx - triggered neurotransmitter release is the focus of intense investigation. The Drosophila coiled-coil domain protein Bruchpilot (BRP) was observed in donut-shaped structures centered at active zones of neuromuscular synapses by using subdiffraction resolution STED ( stimulated emission depletion) fluorescence microscopy. At brp mutant active zones, electron-dense projections (T-bars) were entirely lost, Ca2+ channels were reduced in density, evoked vesicle release was depressed, and short-term plasticity was altered. BRP-like proteins seem to establish proximity between Ca2+ channels and vesicles to allow efficient transmitter release and patterned synaptic plasticity.