In this study we established a transgenic Ca2+ imaging technique in Drosophila that enabled us to target the Ca2+ sensor protein yellow Cameleon-2 specifically to larval neurons. This noninvasive method allowed us to measure evoked Ca2+ signals in presynaptic terminals of larval neuromuscular junctions (NMJs). We combined transgenic Ca2+ imaging with electrophysiological recordings and morphological examinations of larval NMJs to analyze the mechanisms underlying persistently enhanced evoked vesicle release in two independent mutants. We show that persistent strengthening of junctional vesicle release relies on the recruitment of additional active zones, the spacing of which correlated with the evoked presynaptic Ca2+ dynamics of individual...
Synaptic vesicle (SV) release, recycling, and plastic changes of release probability co-occur side b...
AbstractPostsynaptic sensitivity to glutamate was genetically manipulated at the Drosophila neuromus...
Voltage-gated calcium-channels (VGCCs) are indispensable for neuronal information processing. The di...
The developing neuromuscular junctions (NMJs) of Drosophila larvae can undergo long-term strengtheni...
KEY WORDS neurotransmission; neuromuscular junction; synapse; Drosophila; epilepsy; growth; developm...
Harold L. Atwood. Imaging of calcium in Drosophila larval motor possess 7 synapses on average (Atwoo...
Neurons communicate through neurotransmitter release at specialized synaptic regions known as active...
The genetic analysis of larval neuromuscular junctions (NMJs) of Drosophila has provided detailed in...
Drosophila neuromuscular junctions (NMJs) exhibit structural and physiological homeostasis during la...
Neurons communicate by fusing synaptic vesicles (SV) packed with neuronal transmitters with the pres...
SummaryGiven the complexity of the nervous system and its capacity for change, it is remarkable that...
Given the complexity of the nervous system and its capacity for change, it is remarkable that robust...
The primary goal of this work was to examine the role of voltage-dependent Ca2+ channels in regulati...
Here live imaging and genetic manipulations are combined to visualize and quantitatively characteriz...
The Drosophila neuromuscular system is widely used to characterize synaptic development and function...
Synaptic vesicle (SV) release, recycling, and plastic changes of release probability co-occur side b...
AbstractPostsynaptic sensitivity to glutamate was genetically manipulated at the Drosophila neuromus...
Voltage-gated calcium-channels (VGCCs) are indispensable for neuronal information processing. The di...
The developing neuromuscular junctions (NMJs) of Drosophila larvae can undergo long-term strengtheni...
KEY WORDS neurotransmission; neuromuscular junction; synapse; Drosophila; epilepsy; growth; developm...
Harold L. Atwood. Imaging of calcium in Drosophila larval motor possess 7 synapses on average (Atwoo...
Neurons communicate through neurotransmitter release at specialized synaptic regions known as active...
The genetic analysis of larval neuromuscular junctions (NMJs) of Drosophila has provided detailed in...
Drosophila neuromuscular junctions (NMJs) exhibit structural and physiological homeostasis during la...
Neurons communicate by fusing synaptic vesicles (SV) packed with neuronal transmitters with the pres...
SummaryGiven the complexity of the nervous system and its capacity for change, it is remarkable that...
Given the complexity of the nervous system and its capacity for change, it is remarkable that robust...
The primary goal of this work was to examine the role of voltage-dependent Ca2+ channels in regulati...
Here live imaging and genetic manipulations are combined to visualize and quantitatively characteriz...
The Drosophila neuromuscular system is widely used to characterize synaptic development and function...
Synaptic vesicle (SV) release, recycling, and plastic changes of release probability co-occur side b...
AbstractPostsynaptic sensitivity to glutamate was genetically manipulated at the Drosophila neuromus...
Voltage-gated calcium-channels (VGCCs) are indispensable for neuronal information processing. The di...