Synaptic development, function and plasticity are highly regulated processes requiring a precise coordination of pre- and postsynaptic events. Recent studies have begun to highlight Wingless-Int (Wnt) signaling as a key player in synapse differentiation and function. Emerging roles of Wnts include the differentiation of synaptic specializations, microtubule dynamics, architecture of synaptic protein organization, modulation of synaptic efficacy and regulation of gene expression. These processes are driven by a variety of Wnt transduction pathways. Combined with a myriad of Wnts and Frizzled receptor family members, these pathways highlight the versatility of Wnt signaling and the potential for combinatorial use of these pathways in differen...
doi:10.1242/jcs.00089 Recent advances in the field require an update of our Wnt pathway scheme (Hüls...
The Wnt family of secreted signaling molecules is conserved throughout the animal kingdom. Wnt signa...
AbstractThe formation of functional synapses requires precise coordination between neurons and their...
The formation of synaptic connections requires a dialogue between pre and postsynaptic cells to coor...
Synaptic transmission is a dynamic process that requires precise regulation. Early in life, we must ...
The formation of synapses is a tightly regulated process that requires the coordinated assembly of t...
The Wnt signaling pathway plays a role in the development of the central nervous system (CNS) and gr...
The establishment of the regional subdivisions of the vertebrate CNS is accomplished through the act...
The Wnt signaling pathway plays a role in the development of the central nervous system and growing ...
Wnt proteins are best known for their profound roles in cell patterning, because they are required f...
Members of the Wnt family of secreted signaling proteins influence many aspects of neural developmen...
AbstractAt vertebrate neuromuscular junctions (NMJs), Agrin plays pivotal roles in synapse developme...
Synapses are specialized neuronal connections essential for neuronal function. Defects in synaptic a...
Developing synapses mature through the recruitment of specific proteins that stabilize presynaptic a...
Although WNTs have been long thought of as regulators of cell fate, recent studies highlight their i...
doi:10.1242/jcs.00089 Recent advances in the field require an update of our Wnt pathway scheme (Hüls...
The Wnt family of secreted signaling molecules is conserved throughout the animal kingdom. Wnt signa...
AbstractThe formation of functional synapses requires precise coordination between neurons and their...
The formation of synaptic connections requires a dialogue between pre and postsynaptic cells to coor...
Synaptic transmission is a dynamic process that requires precise regulation. Early in life, we must ...
The formation of synapses is a tightly regulated process that requires the coordinated assembly of t...
The Wnt signaling pathway plays a role in the development of the central nervous system (CNS) and gr...
The establishment of the regional subdivisions of the vertebrate CNS is accomplished through the act...
The Wnt signaling pathway plays a role in the development of the central nervous system and growing ...
Wnt proteins are best known for their profound roles in cell patterning, because they are required f...
Members of the Wnt family of secreted signaling proteins influence many aspects of neural developmen...
AbstractAt vertebrate neuromuscular junctions (NMJs), Agrin plays pivotal roles in synapse developme...
Synapses are specialized neuronal connections essential for neuronal function. Defects in synaptic a...
Developing synapses mature through the recruitment of specific proteins that stabilize presynaptic a...
Although WNTs have been long thought of as regulators of cell fate, recent studies highlight their i...
doi:10.1242/jcs.00089 Recent advances in the field require an update of our Wnt pathway scheme (Hüls...
The Wnt family of secreted signaling molecules is conserved throughout the animal kingdom. Wnt signa...
AbstractThe formation of functional synapses requires precise coordination between neurons and their...