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Synaptotagmin VII is targeted to secretory organelles in PC12 cells, where it functions as a high-affinity calcium sensor
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N-glycosylation is essential for vesicular targeting of synaptotagmin 1
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Synaptotagmin VII is targeted to dense-core vesicles and regulates their Ca2+-dependent exocytosis in PC12 cells
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RNA interference-mediated silencing of synaptotagmin IX, but not synaptotagmin I, inhibits dense-core vesicle exocytosis but not in PC12 cells
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Synaptotagmin 7 splice variants differentially regulate synaptic vesicle recycling
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Different domains of synaptotagmin control the choice between kiss-and-run and full fusion
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Synaptotagmin I functions as a calcium sensor to synchronize neurotransmitter release
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The C2BCa2+-binding motif of synaptotagmin is required for synaptic transmission in vivo
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Synaptotagmins form a hierarchy of exocytotic Ca2+ sensors with distinct Ca2+ affinities
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Synaptotagmin VII as a plasma membrane Ca2+ sensor in exocytosis
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Synaptotagmin I functions as a calcium regulator of release probability
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Inhibitory transmission mediated by asynchronous transmitter release
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Synaptotagmin VII regulates Ca2+-dependent exocytosis of lysosomes in fibroblasts
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