SummaryGlial cells are crucial regulators of synapse formation, elimination, and plasticity [1, 2]. In vitro studies have begun to identify glial-derived synaptogenic factors [1], but neuron-glia signaling events during synapse formation in vivo remain poorly defined. The coordinated development of pre- and postsynaptic compartments at the Drosophila neuromuscular junction (NMJ) depends on a muscle-secreted retrograde signal, the TGF-β/BMP Glass bottom boat (Gbb) [3, 4]. Muscle-derived Gbb activates the TGF-β receptors Wishful thinking (Wit) and either Saxophone (Sax) or Thick veins (Tkv) in motor neurons [3, 4]. This induces phosphorylation of Mad (P-Mad) in motor neurons, its translocation into the nucleus with a co-Smad, and activation o...
<div><p>Members of the TGF-β superfamily play numerous roles in nervous system development and funct...
Drosophila neuromuscular junctions (NMJs) exhibit structural and physiological homeostasis during la...
Members of the TGF-b superfamily play numerous roles in nervous system development and function. In ...
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]. ...
SummaryGlia cells are uniquely positioned at synapses, contacting pre- and post-synaptic terminals. ...
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...
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...
SummaryGlia cells are uniquely positioned at synapses, contacting pre- and post-synaptic terminals. ...
BACKGROUND: Cell-to-cell communication at the synapse involves synaptic transmission as well as sign...
Retrograde signaling is an essential component of synaptic development and physiology. Previous stud...
Retrograde signaling is an essential component of synaptic development and physiology. Previous stud...
Members of the TGF-β superfamily play numerous roles in nervous system development and function. In ...
<div><p>Members of the TGF-β superfamily play numerous roles in nervous system development and funct...
Drosophila neuromuscular junctions (NMJs) exhibit structural and physiological homeostasis during la...
Members of the TGF-b superfamily play numerous roles in nervous system development and function. In ...
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]. ...
SummaryGlia cells are uniquely positioned at synapses, contacting pre- and post-synaptic terminals. ...
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...
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...
SummaryGlia cells are uniquely positioned at synapses, contacting pre- and post-synaptic terminals. ...
BACKGROUND: Cell-to-cell communication at the synapse involves synaptic transmission as well as sign...
Retrograde signaling is an essential component of synaptic development and physiology. Previous stud...
Retrograde signaling is an essential component of synaptic development and physiology. Previous stud...
Members of the TGF-β superfamily play numerous roles in nervous system development and function. In ...
<div><p>Members of the TGF-β superfamily play numerous roles in nervous system development and funct...
Drosophila neuromuscular junctions (NMJs) exhibit structural and physiological homeostasis during la...
Members of the TGF-b superfamily play numerous roles in nervous system development and function. In ...