International audienceThe precise distribution of ion channels at the nodes of Ranvier is essential for the efficient propagation of action potentials along myelinated axons. The voltage-gated potassium channels Kv1.1/1.2 are clustered at the juxtaparanodes in association with the cell adhesion molecules, Caspr2 and TAG-1 and the scaffolding protein 4.1B. In the present study, we set up myelinating cultures of DRG neurons and Schwann cells to look through the formation of juxtaparanodes in vitro. We showed that the Kv1.1/Kv1.2 channels were first enriched at paranodes before being restricted to distal paranodes and juxtaparanodes. In addition, the Kv1 channels displayed an asymmetric expression enriched at the distal juxtaparanodes. Caspr2 ...
AbstractThe nodes of Ranvier of myelinated nerves are flanked by paranodal axoglial junctions and th...
The Schwann cell (SC)-axon interface represents a membrane specialization that integrates axonal sig...
AbstractVoltage-gated Na+ and K+ channels are localized to distinct subcellular domains in mammalian...
International audienceThe precise distribution of ion channels at the nodes of Ranvier is essential ...
International audienceThe precise axonal distribution of specific potassium channels is known to sec...
In myelinated axons, K+ channels are concealed under the myelin sheath in the juxtaparanodal region,...
International audienceIn myelinated fibers, the voltage-gated sodium channels Nav1 are concentrated ...
In myelinated fibers, the voltage-gated sodium channels Nav1 are concentrated at the nodal gap to en...
Neurons are characterized by extremely long axons. This exceptional cell shape is likely to depend o...
International audienceCaspr2 and TAG-1 (also known as CNTNAP2 and CNTN2, respectively) are cell adhe...
PubMedID: 16878404The myelinated axon can be divided into three domains: the internodal axon, the pa...
AbstractRapid conduction in myelinated axons depends on the generation of specialized subcellular do...
AbstractRapid nerve impulse conduction depends on specialized membrane domains in myelinated nerve, ...
Myelinated axons are divided into four distinct regions: the node of Ranvier, paranode, juxtaparanod...
To ensure rapid and efficient impulse conduction, myelinated axons establish and maintain specific p...
AbstractThe nodes of Ranvier of myelinated nerves are flanked by paranodal axoglial junctions and th...
The Schwann cell (SC)-axon interface represents a membrane specialization that integrates axonal sig...
AbstractVoltage-gated Na+ and K+ channels are localized to distinct subcellular domains in mammalian...
International audienceThe precise distribution of ion channels at the nodes of Ranvier is essential ...
International audienceThe precise axonal distribution of specific potassium channels is known to sec...
In myelinated axons, K+ channels are concealed under the myelin sheath in the juxtaparanodal region,...
International audienceIn myelinated fibers, the voltage-gated sodium channels Nav1 are concentrated ...
In myelinated fibers, the voltage-gated sodium channels Nav1 are concentrated at the nodal gap to en...
Neurons are characterized by extremely long axons. This exceptional cell shape is likely to depend o...
International audienceCaspr2 and TAG-1 (also known as CNTNAP2 and CNTN2, respectively) are cell adhe...
PubMedID: 16878404The myelinated axon can be divided into three domains: the internodal axon, the pa...
AbstractRapid conduction in myelinated axons depends on the generation of specialized subcellular do...
AbstractRapid nerve impulse conduction depends on specialized membrane domains in myelinated nerve, ...
Myelinated axons are divided into four distinct regions: the node of Ranvier, paranode, juxtaparanod...
To ensure rapid and efficient impulse conduction, myelinated axons establish and maintain specific p...
AbstractThe nodes of Ranvier of myelinated nerves are flanked by paranodal axoglial junctions and th...
The Schwann cell (SC)-axon interface represents a membrane specialization that integrates axonal sig...
AbstractVoltage-gated Na+ and K+ channels are localized to distinct subcellular domains in mammalian...