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RIM C 2 B Domains Target Presynaptic Active Zone Functions to PIP 2 -Containing Membranes.

Neuron 2018 April 19
Rapid and efficient synaptic vesicle fusion requires a pool of primed vesicles, the nearby tethering of Ca2+ channels, and the presence of the phospholipid PIP2 in the target membrane. Although the presynaptic active zone mediates the first two requirements, it is unclear how fusion is targeted to membranes with high PIP2 content. Here we find that the C2 B domain of the active zone scaffold RIM is critical for action potential-triggered fusion. Remarkably, the known RIM functions in vesicle priming and Ca2+ influx do not require RIM C2 B domains. Instead, biophysical experiments reveal that RIM C2 domains, which lack Ca2+ binding, specifically bind to PIP2 . Mutational analyses establish that PIP2 binding to RIM C2 B and its tethering to the other RIM domains are crucial for efficient exocytosis. We propose that RIM C2 B domains are constitutive PIP2 -binding modules that couple mechanisms for vesicle priming and Ca2+ channel tethering to PIP2 -containing target membranes.

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