Synaptic vesicle fusion mediates communication between neurons and is triggered by rapid influx of Ca[superscript 2+]. The Ca[superscript 2+]-triggering step for fusion is regulated by the synaptic vesicle transmembrane protein Synaptotagmin 1 (Syt1). Syt1 contains two cytoplasmic C2 domains, termed C2A and C2B, which coordinate Ca[superscript 2+] binding. Although C2A and C2B share similar topology, binding of Ca[superscript 2+] ions to the C2B domain has been suggested as the only critical trigger for evoked vesicle release. If and how C2A domain function is coordinated with C2B remain unclear. In this study, we generated a panel of Syt1 chimeric constructs in Drosophila to delineate the unique and shared functions of each C2 domain in re...
Synaptotagmin-1 functions as a Ca2+ sensor in neurotransmitter release, and was proposed to act on b...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
The synaptic vesicle protein, synaptotagmin, is the principle Ca2+ sensor for synaptic transmission....
AbstractTo characterize Ca2+-mediated synaptic vesicle fusion, we analyzed Drosophila synaptotagmin ...
Ca[superscript 2+] influx into synaptic compartments during activity is a key mediator of neuronal p...
AbstractTo characterize Ca2+-mediated synaptic vesicle fusion, we analyzed Drosophila synaptotagmin ...
At nerve terminals, a focal and transient increase in intracellular Ca2+ triggers the fusion of neur...
Following nerve stimulation, there are two distinct phases of Ca2+-dependent neurotransmitter releas...
Synaptotagmin 1 (Syt1) is a synaptic vesicle integral membrane protein that regulates neurotransmitt...
Synaptotagmin is a synaptic vesicle protein that is postulated to be the Ca2+ sensor for fast, evoke...
Regulated exocytosis, which underlies many intercellular signaling events, is a tightly controlled p...
C2 domains are widespread motifs that often serve as Ca(2+)-binding modules; some proteins have more...
The majority of cell-to-cell communication relies on the stimulated release of neurotransmitter. Two...
Release of neurotransmitters relies on submillisecond coupling of synaptic vesicle fusion to the tri...
Synaptotagmin-1 functions as a Ca2+ sensor in neurotransmitter release, and was proposed to act on b...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
The synaptic vesicle protein, synaptotagmin, is the principle Ca2+ sensor for synaptic transmission....
AbstractTo characterize Ca2+-mediated synaptic vesicle fusion, we analyzed Drosophila synaptotagmin ...
Ca[superscript 2+] influx into synaptic compartments during activity is a key mediator of neuronal p...
AbstractTo characterize Ca2+-mediated synaptic vesicle fusion, we analyzed Drosophila synaptotagmin ...
At nerve terminals, a focal and transient increase in intracellular Ca2+ triggers the fusion of neur...
Following nerve stimulation, there are two distinct phases of Ca2+-dependent neurotransmitter releas...
Synaptotagmin 1 (Syt1) is a synaptic vesicle integral membrane protein that regulates neurotransmitt...
Synaptotagmin is a synaptic vesicle protein that is postulated to be the Ca2+ sensor for fast, evoke...
Regulated exocytosis, which underlies many intercellular signaling events, is a tightly controlled p...
C2 domains are widespread motifs that often serve as Ca(2+)-binding modules; some proteins have more...
The majority of cell-to-cell communication relies on the stimulated release of neurotransmitter. Two...
Release of neurotransmitters relies on submillisecond coupling of synaptic vesicle fusion to the tri...
Synaptotagmin-1 functions as a Ca2+ sensor in neurotransmitter release, and was proposed to act on b...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...