Complexins are small α-helical proteins that modulate neurotransmitter release by binding to SNARE complexes during synaptic vesicle exocytosis. They have been found to function as fusion clamps to inhibit spontaneous synaptic vesicle fusion in the absence of Ca[superscript 2+], while also promoting evoked neurotransmitter release following an action potential. Complexins consist of an N-terminal domain and an accessory α-helix that regulates the activating and inhibitory properties of the protein, respectively, and a central α-helix that binds the SNARE complex and is essential for both functions. In addition, complexins contain a largely unstructured C-terminal domain whose role in synaptic vesicle cycling is poorly defined. Here, we demo...
SummaryBackgroundComplexin binds the SNARE complex at synapses and regulates exocytosis, but genetic...
SummarySynapses continually replenish their synaptic vesicle (SV) pools while suppressing spontaneou...
SummaryComplexin activates and clamps neurotransmitter release; impairing complexin function decreas...
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....
Neuronal transmitters are released from nerve terminals via the fusion of synaptic vesicles with the...
SummarySNARE-mediated synaptic exocytosis is orchestrated by facilitatory and inhibitory mechanisms....
The neuronal protein complexin contains multiple domains that exert clamping and facilitatory functi...
Complexin (Cpx) is a SNARE-binding protein that regulates neurotransmission by clamping spontaneous ...
AbstractSNARE complexes form between the synaptic vesicle protein synaptobrevin and the plasma membr...
Summary: SNARE-mediated synaptic vesicle (SV) fusion is controlled by multiple regulatory proteins t...
SummarySNARE-mediated synaptic exocytosis is orchestrated by facilitatory and inhibitory mechanisms....
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...
SummarySynaptic plasticity is a fundamental feature of the nervous system that allows adaptation to ...
SummaryBackgroundComplexin binds the SNARE complex at synapses and regulates exocytosis, but genetic...
SummarySynapses continually replenish their synaptic vesicle (SV) pools while suppressing spontaneou...
SummaryComplexin activates and clamps neurotransmitter release; impairing complexin function decreas...
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....
Neuronal transmitters are released from nerve terminals via the fusion of synaptic vesicles with the...
SummarySNARE-mediated synaptic exocytosis is orchestrated by facilitatory and inhibitory mechanisms....
The neuronal protein complexin contains multiple domains that exert clamping and facilitatory functi...
Complexin (Cpx) is a SNARE-binding protein that regulates neurotransmission by clamping spontaneous ...
AbstractSNARE complexes form between the synaptic vesicle protein synaptobrevin and the plasma membr...
Summary: SNARE-mediated synaptic vesicle (SV) fusion is controlled by multiple regulatory proteins t...
SummarySNARE-mediated synaptic exocytosis is orchestrated by facilitatory and inhibitory mechanisms....
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...
SummarySynaptic plasticity is a fundamental feature of the nervous system that allows adaptation to ...
SummaryBackgroundComplexin binds the SNARE complex at synapses and regulates exocytosis, but genetic...
SummarySynapses continually replenish their synaptic vesicle (SV) pools while suppressing spontaneou...
SummaryComplexin activates and clamps neurotransmitter release; impairing complexin function decreas...