Javascript must be enabled to continue!
Heterodimerization of Munc13 C2A domain with RIM regulates synaptic vesicle docking and priming
View through CrossRef
AbstractThe presynaptic active zone protein Munc13 is essential for neurotransmitter release, playing key roles in vesicle docking and priming. Mechanistically, it is thought that the C2A domain of Munc13 inhibits the priming function by homodimerization, and that RIM disrupts the autoinhibitory homodimerization forming monomeric priming-competent Munc13. However, it is unclear whether the C2A domain mediates other Munc13 functions in addition to this inactivation–activation switch. Here, we utilize mutations that modulate the homodimerization and heterodimerization states to define additional roles of the Munc13 C2A domain. Using electron microscopy and electrophysiology in hippocampal cultures, we show that the C2A domain is critical for additional steps of vesicular release, including vesicle docking. Optimal vesicle docking and priming is only possible when Munc13 heterodimerizes with RIM via its C2A domain. Beyond being a switching module, our data suggest that the Munc13-RIM heterodimer is an active component of the vesicle docking, priming and release complex.
Springer Science and Business Media LLC
Title: Heterodimerization of Munc13 C2A domain with RIM regulates synaptic vesicle docking and priming
Description:
AbstractThe presynaptic active zone protein Munc13 is essential for neurotransmitter release, playing key roles in vesicle docking and priming.
Mechanistically, it is thought that the C2A domain of Munc13 inhibits the priming function by homodimerization, and that RIM disrupts the autoinhibitory homodimerization forming monomeric priming-competent Munc13.
However, it is unclear whether the C2A domain mediates other Munc13 functions in addition to this inactivation–activation switch.
Here, we utilize mutations that modulate the homodimerization and heterodimerization states to define additional roles of the Munc13 C2A domain.
Using electron microscopy and electrophysiology in hippocampal cultures, we show that the C2A domain is critical for additional steps of vesicular release, including vesicle docking.
Optimal vesicle docking and priming is only possible when Munc13 heterodimerizes with RIM via its C2A domain.
Beyond being a switching module, our data suggest that the Munc13-RIM heterodimer is an active component of the vesicle docking, priming and release complex.
Related Results
Munc13-4 Regulates Granule Secretion in Human Neutrophils
Munc13-4 Regulates Granule Secretion in Human Neutrophils
Abstract
The neutrophil plays a central role in the innate host immune defense. Regulated exocytosis of its granules and release of antimicrobial and cytotoxic su...
C2A activates a cryptic Ca
2+
-triggered membrane penetration activity within the C2B domain of synaptotagmin I
C2A activates a cryptic Ca
2+
-triggered membrane penetration activity within the C2B domain of synaptotagmin I
Synaptotagmin (syt) I, an integral membrane protein localized to secretory vesicles, is a putative Ca
2+
sensor for exocytosis. Its N terminus spans the mem...
Enhancement of Okra (Abelmoschus esculentus L.) Germination through Seed Priming Techniques
Enhancement of Okra (Abelmoschus esculentus L.) Germination through Seed Priming Techniques
The presence of a hard seed coat, coupled with various abiotic stresses during germination, can result in delayed and erratic crop establishment of okra (Abelmoschus esculentus L.)...
Synaptic Integration
Synaptic Integration
Abstract
Neurons in the brain receive thousands of synaptic inputs from other neurons. Synaptic integration is the term used to describe how neu...
Abstract PR-002: SIRT2 promotes BRCA1-BARD1 heterodimerization through deacetylation
Abstract PR-002: SIRT2 promotes BRCA1-BARD1 heterodimerization through deacetylation
Abstract
The breast cancer type I susceptibility protein (BRCA1) and BRCA1-associated RING domain protein I (BARD1) heterodimer promotes genome integrity through ple...
Mechanism that regulates the mutual inhibition controls functional switch of UNC-13
Mechanism that regulates the mutual inhibition controls functional switch of UNC-13
Abstract
Munc13 plays a crucial role in short-term synaptic plasticity by regulating synaptic vesicle (SV) exocytosis and neurotransmitter release at the presynapti...
Experimental Optimization of Self-Priming Pump Based on the Full Factor Test
Experimental Optimization of Self-Priming Pump Based on the Full Factor Test
Self-priming pump as the core equipment for flood fighting and emergency rescue plays an important role in flood prevention and other fields. More importantly, the geometric parame...
Comparing apples and oranges in priming of attentional selection?
Comparing apples and oranges in priming of attentional selection?
Priming of attentional selection involves speeded selection of task-relevant visual search items when search stimuli remain constant from one search to the next. In the literature,...

