TY - JOUR
T1 - The paranodal cytoskeleton clusters Na+ channels at nodes of Ranvier
AU - Amor, Veronique
AU - Zhang, Chuansheng
AU - Vainshtein, Anna
AU - Zhang, Ao
AU - Zollinger, Daniel R.
AU - Eshed-Eisenbach, Yael
AU - Brophy, Peter J.
AU - Rasband, Matthew N.
AU - Peles, Elior
N1 - Publisher Copyright: © Amor et al.
PY - 2017/1/30
Y1 - 2017/1/30
N2 - A high density of Na+ channels at nodes of Ranvier is necessary for rapid and efficient action potential propagation in myelinated axons. Na+ channel clustering is thought to depend on two axonal cell adhesion molecules that mediate interactions between the axon and myelinating glia at the nodal gap (i.e., NF186) and the paranodal junction (i.e., Caspr). Here we show that while Na+ channels cluster at nodes in the absence of NF186, they fail to do so in double conditional knockout mice lacking both NF186 and the paranodal cell adhesion molecule Caspr, demonstrating that a paranodal junction-dependent mechanism can cluster Na+ channels at nodes. Furthermore, we show that paranode-dependent clustering of nodal Na+ channels requires axonal βII spectrin which is concentrated at paranodes. Our results reveal that the paranodal junction-dependent mechanism of Na+channel clustering is mediated by the spectrin-based paranodal axonal cytoskeleton.
AB - A high density of Na+ channels at nodes of Ranvier is necessary for rapid and efficient action potential propagation in myelinated axons. Na+ channel clustering is thought to depend on two axonal cell adhesion molecules that mediate interactions between the axon and myelinating glia at the nodal gap (i.e., NF186) and the paranodal junction (i.e., Caspr). Here we show that while Na+ channels cluster at nodes in the absence of NF186, they fail to do so in double conditional knockout mice lacking both NF186 and the paranodal cell adhesion molecule Caspr, demonstrating that a paranodal junction-dependent mechanism can cluster Na+ channels at nodes. Furthermore, we show that paranode-dependent clustering of nodal Na+ channels requires axonal βII spectrin which is concentrated at paranodes. Our results reveal that the paranodal junction-dependent mechanism of Na+channel clustering is mediated by the spectrin-based paranodal axonal cytoskeleton.
UR - http://www.scopus.com/inward/record.url?scp=85011416540&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/record.url?scp=85041787649&partnerID=8YFLogxK
U2 - 10.7554/eLife.21392.001
DO - 10.7554/eLife.21392.001
M3 - مقالة
SN - 2050-084X
VL - 6
JO - eLife
JF - eLife
M1 - e21392
ER -