SummaryBackground: Precise neural circuitry is established and maintained through a regulated balance of synapse stabilization and disassembly. Currently, little is known about the molecular mechanisms that specify synapse stability versus disassembly.Results: Here, we demonstrate that presynaptic spectrin is an essential scaffold that is required to maintain synapse stability at the Drosophila neuromuscular junction (NMJ). Loss of presynaptic spectrin leads to synapse disassembly and ultimately to the elimination of the NMJ. Synapse elimination is documented through light-level, ultrastructural, and electrophysiological assays. These combined assays reveal that impaired neurotransmission is secondary to synapse retraction. We demonstrate t...
SummaryBackgroundAmong the most prominent molecular constituents of a recycling synaptic vesicle is ...
Abstract Background Synaptic transmission requires bo...
Synapses are fundamental signaling units of the central nervous system that mediate communication be...
SummaryBackground: Precise neural circuitry is established and maintained through a regulated balanc...
AbstractWe present evidence that synapse retraction occurs during normal synaptic growth at the Dros...
SummarySynaptic connections are stabilized through transsynaptic adhesion complexes that are anchore...
Work in the lab of Graeme Davis has shown that genetic disruption of the presynaptic Spectrin-Ankyri...
Once synapses have formed, functionally important connections have to be maintained and stabilized, ...
Synaptic connections are stabilized through transsynaptic adhesion complexes that are anchored in th...
Synaptic connections are established with characteristic, cell type-specific size and spacing. In th...
SummaryIn a forward genetic screen for mutations that destabilize the neuromuscular junction, we ide...
Loss of spectrin or ankyrin in the presynaptic motoneuron disrupts the synaptic microtubule cytoskel...
Synaptic communication requires precise alignment of presynaptic active zones with postsynaptic rece...
Neurotransmission is an adaptation of cellular secretion characterized by precise spatial and tempor...
The synapse, the minimal element required for interneuronal communication in the nervous sytems, is ...
SummaryBackgroundAmong the most prominent molecular constituents of a recycling synaptic vesicle is ...
Abstract Background Synaptic transmission requires bo...
Synapses are fundamental signaling units of the central nervous system that mediate communication be...
SummaryBackground: Precise neural circuitry is established and maintained through a regulated balanc...
AbstractWe present evidence that synapse retraction occurs during normal synaptic growth at the Dros...
SummarySynaptic connections are stabilized through transsynaptic adhesion complexes that are anchore...
Work in the lab of Graeme Davis has shown that genetic disruption of the presynaptic Spectrin-Ankyri...
Once synapses have formed, functionally important connections have to be maintained and stabilized, ...
Synaptic connections are stabilized through transsynaptic adhesion complexes that are anchored in th...
Synaptic connections are established with characteristic, cell type-specific size and spacing. In th...
SummaryIn a forward genetic screen for mutations that destabilize the neuromuscular junction, we ide...
Loss of spectrin or ankyrin in the presynaptic motoneuron disrupts the synaptic microtubule cytoskel...
Synaptic communication requires precise alignment of presynaptic active zones with postsynaptic rece...
Neurotransmission is an adaptation of cellular secretion characterized by precise spatial and tempor...
The synapse, the minimal element required for interneuronal communication in the nervous sytems, is ...
SummaryBackgroundAmong the most prominent molecular constituents of a recycling synaptic vesicle is ...
Abstract Background Synaptic transmission requires bo...
Synapses are fundamental signaling units of the central nervous system that mediate communication be...