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Key determinants of the dual clamp/activator function of Complexin
by
Gaya, Surya
, Makke, Mazen
, Frisch, Walentina
, Yarzagaray, Antonio
, Pastor-Ruiz, Alejandro
, Zimmer, Michelle
, Bruns, Dieter
in
Adaptor Proteins, Vesicular Transport - genetics
/ Adaptor Proteins, Vesicular Transport - metabolism
/ Amino acids
/ Animals
/ C-Terminus
/ Calcium - metabolism
/ Chromaffin cells
/ Chromaffin Cells - metabolism
/ complexin
/ Exocytosis
/ Hydrophobicity
/ Mice
/ Molecular modelling
/ Nerve Tissue Proteins - genetics
/ Nerve Tissue Proteins - metabolism
/ Neuroscience
/ neurotransmitter release
/ Neurotransmitters
/ Protein Binding
/ Proteins
/ Secretion
/ SNAP receptors
/ SNARE Proteins - genetics
/ SNARE Proteins - metabolism
/ Synaptotagmin
/ Synaptotagmin I - chemistry
/ Synaptotagmin I - genetics
/ Synaptotagmin I - metabolism
/ Synaptotagmins - genetics
/ Synaptotagmins - metabolism
/ Vesicle fusion
2024
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Key determinants of the dual clamp/activator function of Complexin
by
Gaya, Surya
, Makke, Mazen
, Frisch, Walentina
, Yarzagaray, Antonio
, Pastor-Ruiz, Alejandro
, Zimmer, Michelle
, Bruns, Dieter
in
Adaptor Proteins, Vesicular Transport - genetics
/ Adaptor Proteins, Vesicular Transport - metabolism
/ Amino acids
/ Animals
/ C-Terminus
/ Calcium - metabolism
/ Chromaffin cells
/ Chromaffin Cells - metabolism
/ complexin
/ Exocytosis
/ Hydrophobicity
/ Mice
/ Molecular modelling
/ Nerve Tissue Proteins - genetics
/ Nerve Tissue Proteins - metabolism
/ Neuroscience
/ neurotransmitter release
/ Neurotransmitters
/ Protein Binding
/ Proteins
/ Secretion
/ SNAP receptors
/ SNARE Proteins - genetics
/ SNARE Proteins - metabolism
/ Synaptotagmin
/ Synaptotagmin I - chemistry
/ Synaptotagmin I - genetics
/ Synaptotagmin I - metabolism
/ Synaptotagmins - genetics
/ Synaptotagmins - metabolism
/ Vesicle fusion
2024
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Key determinants of the dual clamp/activator function of Complexin
by
Gaya, Surya
, Makke, Mazen
, Frisch, Walentina
, Yarzagaray, Antonio
, Pastor-Ruiz, Alejandro
, Zimmer, Michelle
, Bruns, Dieter
in
Adaptor Proteins, Vesicular Transport - genetics
/ Adaptor Proteins, Vesicular Transport - metabolism
/ Amino acids
/ Animals
/ C-Terminus
/ Calcium - metabolism
/ Chromaffin cells
/ Chromaffin Cells - metabolism
/ complexin
/ Exocytosis
/ Hydrophobicity
/ Mice
/ Molecular modelling
/ Nerve Tissue Proteins - genetics
/ Nerve Tissue Proteins - metabolism
/ Neuroscience
/ neurotransmitter release
/ Neurotransmitters
/ Protein Binding
/ Proteins
/ Secretion
/ SNAP receptors
/ SNARE Proteins - genetics
/ SNARE Proteins - metabolism
/ Synaptotagmin
/ Synaptotagmin I - chemistry
/ Synaptotagmin I - genetics
/ Synaptotagmin I - metabolism
/ Synaptotagmins - genetics
/ Synaptotagmins - metabolism
/ Vesicle fusion
2024
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Key determinants of the dual clamp/activator function of Complexin
Journal Article
Key determinants of the dual clamp/activator function of Complexin
2024
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Overview
Complexin determines magnitude and kinetics of synchronized secretion, but the underlying molecular mechanisms remained unclear. Here, we show that the hydrophobic face of the amphipathic helix at the C-terminus of Complexin II (CpxII, amino acids 115–134) binds to fusion-promoting SNARE proteins, prevents premature secretion, and allows vesicles to accumulate in a release-ready state in mouse chromaffin cells. Specifically, we demonstrate that an unrelated amphipathic helix functionally substitutes for the C-terminal domain (CTD) of CpxII and that amino acid substitutions on the hydrophobic side compromise the arrest of the pre-fusion intermediate. To facilitate synchronous vesicle fusion, the N-terminal domain (NTD) of CpxII (amino acids 1–27) specifically cooperates with synaptotagmin I (SytI), but not with synaptotagmin VII. Expression of CpxII rescues the slow release kinetics of the Ca 2+ -binding mutant Syt I R233Q, whereas the N-terminally truncated variant of CpxII further delays it. These results indicate that the CpxII NTD regulates mechanisms which are governed by the forward rate of Ca 2+ binding to Syt I. Overall, our results shed new light on key molecular properties of CpxII that hinder premature exocytosis and accelerate synchronous exocytosis.
Publisher
eLife Sciences Publications Ltd,eLife Sciences Publications, Ltd
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