SummarySNARE-mediated synaptic exocytosis is orchestrated by facilitatory and inhibitory mechanisms. Genetic ablations of Complexins, a family of SNARE-complex-binding proteins, in mice and Drosophila cause apparently opposite effects on neurotransmitter release, leading to contradictory hypotheses of Complexin function. Reconstitution experiments with different fusion assays and Complexins also yield conflicting results. We therefore performed cross-species rescue experiments to compare the functions of murine and Drosophila Complexins in both mouse and fly synapses. We found that murine and Drosophila Complexins employ conserved mechanisms to regulate exocytosis despite their strikingly different overall effects on neurotransmitter releas...
Summary: SNARE-mediated synaptic vesicle (SV) fusion is controlled by multiple regulatory proteins t...
UnrestrictedProperly regulated exocytosis of neurotransmitters and hormones from membrane-delimited ...
SummarySynaptic plasticity is a fundamental feature of the nervous system that allows adaptation to ...
SummarySNARE-mediated synaptic exocytosis is orchestrated by facilitatory and inhibitory mechanisms....
Neurotransmitter release following synaptic vesicle (SV) fusion is the fundamental mechanism for neu...
The SNARE-binding protein complexin (Cpx) has been demonstrated to regulate synaptic vesicle fusion....
Complexins are small α-helical proteins that modulate neurotransmitter release by binding to SNARE c...
Neuronal transmitters are released from nerve terminals via the fusion of synaptic vesicles with the...
SummaryBackgroundComplexin binds the SNARE complex at synapses and regulates exocytosis, but genetic...
Ca2+-dependent exocytosis of synaptic vesicles is mediated by the SNARE proteins synaptobrevin/VAMP,...
The neuronal protein complexin contains multiple domains that exert clamping and facilitatory functi...
SummaryBackgroundComplexin binds the SNARE complex at synapses and regulates exocytosis, but genetic...
SummarySynapses continually replenish their synaptic vesicle (SV) pools while suppressing spontaneou...
Synaptic plasticity is a fundamental feature of the nervous system that allows adaptation to changin...
Both constitutive secretion and Ca(2+)-regulated exocytosis require the assembly of the soluble N-et...
Summary: SNARE-mediated synaptic vesicle (SV) fusion is controlled by multiple regulatory proteins t...
UnrestrictedProperly regulated exocytosis of neurotransmitters and hormones from membrane-delimited ...
SummarySynaptic plasticity is a fundamental feature of the nervous system that allows adaptation to ...
SummarySNARE-mediated synaptic exocytosis is orchestrated by facilitatory and inhibitory mechanisms....
Neurotransmitter release following synaptic vesicle (SV) fusion is the fundamental mechanism for neu...
The SNARE-binding protein complexin (Cpx) has been demonstrated to regulate synaptic vesicle fusion....
Complexins are small α-helical proteins that modulate neurotransmitter release by binding to SNARE c...
Neuronal transmitters are released from nerve terminals via the fusion of synaptic vesicles with the...
SummaryBackgroundComplexin binds the SNARE complex at synapses and regulates exocytosis, but genetic...
Ca2+-dependent exocytosis of synaptic vesicles is mediated by the SNARE proteins synaptobrevin/VAMP,...
The neuronal protein complexin contains multiple domains that exert clamping and facilitatory functi...
SummaryBackgroundComplexin binds the SNARE complex at synapses and regulates exocytosis, but genetic...
SummarySynapses continually replenish their synaptic vesicle (SV) pools while suppressing spontaneou...
Synaptic plasticity is a fundamental feature of the nervous system that allows adaptation to changin...
Both constitutive secretion and Ca(2+)-regulated exocytosis require the assembly of the soluble N-et...
Summary: SNARE-mediated synaptic vesicle (SV) fusion is controlled by multiple regulatory proteins t...
UnrestrictedProperly regulated exocytosis of neurotransmitters and hormones from membrane-delimited ...
SummarySynaptic plasticity is a fundamental feature of the nervous system that allows adaptation to ...