Retrograde signaling is an essential component of synaptic development and physiology. Previous studies show that bone morphogenetic protein (BMP)-dependent retrograde signaling is required for the proper development of the neuromuscular junction (NMJ) in Drosophila. These studies, moreover, raised the significant possibility that the development of central motor circuitry might similarly be reliant on such signaling. To test this hypothesis, retrograde signaling between postsynaptic motoneurons and their presynaptic interneurons is examined. Postsynaptic expression of an adenylate cyclase encoded by rutabaga ( rut), is sufficient to strengthen synaptic transmission at these identified central synapses. Results are presented to show that th...
Glial cells are crucial regulators of synapse formation, elimination, and plasticity [1, 2]. In vitr...
SummaryGlial cells are crucial regulators of synapse formation, elimination, and plasticity [1, 2]. ...
AbstractRetrograde signaling plays an important role in synaptic homeostasis, growth, and plasticity...
Retrograde signaling is an essential component of synaptic development and physiology. Previous stud...
Drosophila neuromuscular junctions (NMJs) exhibit structural and physiological homeostasis during la...
BACKGROUND: Cell-to-cell communication at the synapse involves synaptic transmission as well as sign...
AbstractWe show that the BMP ortholog Gbb can signal by a retrograde mechanism to regulate synapse g...
BACKGROUND: Cell-to-cell communication at the synapse involves synaptic transmission as well as sign...
SummaryBackgroundCell-to-cell communication at the synapse involves synaptic transmission as well as...
SummaryBackgroundCell-to-cell communication at the synapse involves synaptic transmission as well as...
AbstractRetrograde signaling plays an important role in synaptic homeostasis, growth, and plasticity...
AbstractWe show that the BMP ortholog Gbb can signal by a retrograde mechanism to regulate synapse g...
SummaryRetrograde signaling is essential for coordinating the growth of synaptic structures; however...
AbstractRecent studies have confirmed that a retrograde signal is produced at the neuromuscular junc...
Retrograde signaling systems are fundamental modes of communication synapses utilize to dynamically ...
Glial cells are crucial regulators of synapse formation, elimination, and plasticity [1, 2]. In vitr...
SummaryGlial cells are crucial regulators of synapse formation, elimination, and plasticity [1, 2]. ...
AbstractRetrograde signaling plays an important role in synaptic homeostasis, growth, and plasticity...
Retrograde signaling is an essential component of synaptic development and physiology. Previous stud...
Drosophila neuromuscular junctions (NMJs) exhibit structural and physiological homeostasis during la...
BACKGROUND: Cell-to-cell communication at the synapse involves synaptic transmission as well as sign...
AbstractWe show that the BMP ortholog Gbb can signal by a retrograde mechanism to regulate synapse g...
BACKGROUND: Cell-to-cell communication at the synapse involves synaptic transmission as well as sign...
SummaryBackgroundCell-to-cell communication at the synapse involves synaptic transmission as well as...
SummaryBackgroundCell-to-cell communication at the synapse involves synaptic transmission as well as...
AbstractRetrograde signaling plays an important role in synaptic homeostasis, growth, and plasticity...
AbstractWe show that the BMP ortholog Gbb can signal by a retrograde mechanism to regulate synapse g...
SummaryRetrograde signaling is essential for coordinating the growth of synaptic structures; however...
AbstractRecent studies have confirmed that a retrograde signal is produced at the neuromuscular junc...
Retrograde signaling systems are fundamental modes of communication synapses utilize to dynamically ...
Glial cells are crucial regulators of synapse formation, elimination, and plasticity [1, 2]. In vitr...
SummaryGlial cells are crucial regulators of synapse formation, elimination, and plasticity [1, 2]. ...
AbstractRetrograde signaling plays an important role in synaptic homeostasis, growth, and plasticity...