Abstract
Voltage-gated calcium channel Cav2.1 undergoes Ca2+-dependent facilitation and inactivation, which are important in short-term synaptic plasticity. In presynaptic terminals, Cav2.1 forms large protein complexes that include synaptotagmins. Synaptotagmin-7 (Syt-7) is essential to mediate short-term synaptic plasticity in many synapses. Here, based on evidence that Cav2.1 and Syt-7 are both required for short-term synaptic facilita-tion, we investigated the direct interaction of Syt-7 with Cav2.1 and probed its regulation of Cav2.1 function. We found that Syt-7 binds specifically to the a1A subunit of Cav 2.1 through interaction with the synaptic-pro-tein interaction (synprint) site. Surprisingly, this interaction enhances facilitation in paired-pulse protocols and accelerates the onset of facilitation. Syt-7a induces a depolarizing shift in the voltage dependence of activation of Cav2.1 and slows Ca2+-dependent inactivation, whereas Syt-7β and Syt-7γ have smaller effects. Our results identify an unexpected, isoform-specific interaction between Cav 2.1 and Syt-7 through the synprint site, which enhances Cav2.1 facilitation and modulates its inactivation.
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Djillani, A., Bazinet, J., & Catterall, W. A. (2022). Synaptotagmin-7 Enhances Facilitation of Cav2.1 Calcium Channels. ENeuro, 9(3). https://doi.org/10.1523/ENEURO.0081-22.2022
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