Publication | Open Access
Dynamic Ca <sup>2+</sup> -Dependent Stimulation of Vesicle Fusion by Membrane-Anchored Synaptotagmin 1
121
Citations
21
References
2010
Year
Protein SecretionSynaptic TransmissionNeurotransmitterMolecular BiologyVesicle FusionNeurotransmissionSynaptic SignalingCellular PhysiologyMembrane FusionMembrane TransportCa2+ LevelCa2+ SensitivityBiophysicsMembrane-anchored Synaptotagmin 1Ion ChannelsMembrane BiologyMembrane SystemProtein TransportCell BiologyPhysiological Ca2+ LevelsSynaptic PlasticitySignal TransductionNeurophysiologyNatural SciencesPhysiologyIntracellular TraffickingCellular BiochemistryMedicine
In neurons, synaptotagmin 1 (Syt1) is thought to mediate the fusion of synaptic vesicles with the plasma membrane when presynaptic Ca2+ levels rise. However, in vitro reconstitution experiments have failed to recapitulate key characteristics of Ca2+-triggered membrane fusion. Using an in vitro single-vesicle fusion assay, we found that membrane-anchored Syt1 enhanced Ca2+ sensitivity and fusion speed. This stimulatory activity of membrane-anchored Syt1 dropped as the Ca2+ level rose beyond physiological levels. Thus, Syt1 requires the membrane anchor to stimulate vesicle fusion at physiological Ca2+ levels and may function as a dynamic presynaptic Ca2+ sensor to control the probability of neurotransmitter release.
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