Myelinated axons are endowed with a specialized domain structure that is essential for saltatory action potential conduction. The paranodal domain contains the axoglial junctions and displays a unique ultrastructure that resembles the invertebrate septate junctions (SJs). Biochemical characterizations of the paranodal axoglial SJs have identified several molecular components that include Caspr and contactin (Cont) on the axonal side and neurofascin 155 kDa (NF155) isoform on the glial side. All these proteins are essential for the formation of the axoglial SJs. Based on the interactions between Caspr and Cont and their colocalization in the CA1 synaptic areas, it was proposed that the synaptic function of Cont requires Caspr. Here we have e...
Myelinated axons are segregated into molecular domains that are essential for action potential propa...
In myelinated axons, K+ channels are concealed under the myelin sheath in the juxtaparanodal region,...
BackgroundMyelinated axons are organized into distinct subcellular and molecular regions. Without pr...
Myelinated axons are endowed with a specialized domain structure that is essential for saltatory act...
Precise targeting and maintenance of axonal domains in myelinated axons is essential for saltatory c...
Mice incapable of synthesizing the abundant galactolipids of myelin exhibit disrupted paranodal axo-...
The formation of paranodal axo-glial junctions is critical for the rapid and efficient propagation o...
AbstractRapid nerve impulse conduction depends on specialized membrane domains in myelinated nerve, ...
AbstractMyelinated fibers are organized into distinct domains that are necessary for saltatory condu...
Axo–glial junctions (AGJs) play a critical role in the organization and maintenance of molecular dom...
Mitochondria and other membranous organelles are frequently enriched in the nodes and paranodes of p...
AbstractRapid conduction in myelinated axons depends on the generation of specialized subcellular do...
The evolutionary demand for rapid nerve impulse conduction led to the process of myelination-depende...
Formation of the paranodal axoglial junction (PNJ) requires the presence of three cell adhesion mole...
AbstractIn myelinated fibers of the vertebrate nervous system, glial-ensheathing cells interact with...
Myelinated axons are segregated into molecular domains that are essential for action potential propa...
In myelinated axons, K+ channels are concealed under the myelin sheath in the juxtaparanodal region,...
BackgroundMyelinated axons are organized into distinct subcellular and molecular regions. Without pr...
Myelinated axons are endowed with a specialized domain structure that is essential for saltatory act...
Precise targeting and maintenance of axonal domains in myelinated axons is essential for saltatory c...
Mice incapable of synthesizing the abundant galactolipids of myelin exhibit disrupted paranodal axo-...
The formation of paranodal axo-glial junctions is critical for the rapid and efficient propagation o...
AbstractRapid nerve impulse conduction depends on specialized membrane domains in myelinated nerve, ...
AbstractMyelinated fibers are organized into distinct domains that are necessary for saltatory condu...
Axo–glial junctions (AGJs) play a critical role in the organization and maintenance of molecular dom...
Mitochondria and other membranous organelles are frequently enriched in the nodes and paranodes of p...
AbstractRapid conduction in myelinated axons depends on the generation of specialized subcellular do...
The evolutionary demand for rapid nerve impulse conduction led to the process of myelination-depende...
Formation of the paranodal axoglial junction (PNJ) requires the presence of three cell adhesion mole...
AbstractIn myelinated fibers of the vertebrate nervous system, glial-ensheathing cells interact with...
Myelinated axons are segregated into molecular domains that are essential for action potential propa...
In myelinated axons, K+ channels are concealed under the myelin sheath in the juxtaparanodal region,...
BackgroundMyelinated axons are organized into distinct subcellular and molecular regions. Without pr...