AbstractPresynaptic short-term plasticity is an important adaptive mechanism regulating synaptic transmitter release at varying action potential frequencies. However, the underlying molecular mechanisms are unknown. We examined genetically defined and functionally unique axonal subpopulations of synapses in excitatory hippocampal neurons that utilize either Munc13-1 or Munc13-2 as synaptic vesicle priming factor. In contrast to Munc13-1-dependent synapses, Munc13-2-driven synapses show pronounced and transient augmentation of synaptic amplitudes following high-frequency stimulation. This augmentation is caused by a Ca2+-dependent increase in release probability and releasable vesicle pool size, and requires phospholipase C activity. Thus, d...
AbstractThe efficacy of synaptic transmission between neurons can be altered transiently during neur...
Active zones consist of protein scaffolds that are tightly attached to the presynaptic plasma membra...
During ongoing presynaptic action potential (AP) firing, transmitter release is limited by the avail...
Presynaptic short-term plasticity is an important adaptive mechanism regulating synaptic transmitter...
AbstractPresynaptic short-term plasticity is an important adaptive mechanism regulating synaptic tra...
The short-term dynamics of synaptic communication between neurons provides neural networks with spec...
Synaptic vesicles must be primed to fusion competence before they can fuse with the plasma membrane ...
The Munc13 gene family encodes molecules located at the synaptic active zone that regulate the relia...
Neuronal dense-core vesicles (DCVs) contain diverse cargo crucial for brain development and function...
The Munc13 gene family encodes molecules located at the synaptic active zone that regulate the relia...
Short-term synaptic plasticity, the dynamic alteration of synaptic strength during high-frequency ac...
Munc18-1 is a soluble protein essential for synaptic transmission. To investigate the dynamics of en...
Short-term synaptic plasticity, the dynamic alteration of synaptic strength during high-frequency ac...
Munc13 proteins play several roles in regulating short-term synaptic plasticity. However, the underl...
Munc13 is a multidomain protein of presynaptic active zones that mediates the priming and plasticity...
AbstractThe efficacy of synaptic transmission between neurons can be altered transiently during neur...
Active zones consist of protein scaffolds that are tightly attached to the presynaptic plasma membra...
During ongoing presynaptic action potential (AP) firing, transmitter release is limited by the avail...
Presynaptic short-term plasticity is an important adaptive mechanism regulating synaptic transmitter...
AbstractPresynaptic short-term plasticity is an important adaptive mechanism regulating synaptic tra...
The short-term dynamics of synaptic communication between neurons provides neural networks with spec...
Synaptic vesicles must be primed to fusion competence before they can fuse with the plasma membrane ...
The Munc13 gene family encodes molecules located at the synaptic active zone that regulate the relia...
Neuronal dense-core vesicles (DCVs) contain diverse cargo crucial for brain development and function...
The Munc13 gene family encodes molecules located at the synaptic active zone that regulate the relia...
Short-term synaptic plasticity, the dynamic alteration of synaptic strength during high-frequency ac...
Munc18-1 is a soluble protein essential for synaptic transmission. To investigate the dynamics of en...
Short-term synaptic plasticity, the dynamic alteration of synaptic strength during high-frequency ac...
Munc13 proteins play several roles in regulating short-term synaptic plasticity. However, the underl...
Munc13 is a multidomain protein of presynaptic active zones that mediates the priming and plasticity...
AbstractThe efficacy of synaptic transmission between neurons can be altered transiently during neur...
Active zones consist of protein scaffolds that are tightly attached to the presynaptic plasma membra...
During ongoing presynaptic action potential (AP) firing, transmitter release is limited by the avail...