
Amyloid precursor protein (APP), commonly associated with Alzheimer disease, is upregulated and distributes evenly along the injured axons, and therefore, also known as a marker of demyelinating axonal injury and axonal degeneration. However, the physiological distribution and function of APP along myelinated axons was unknown. We report that APP aggregates at nodes of Ranvier (NOR) in the myelinated central nervous system (CNS) axons but not in the peripheral nervous system (PNS). At CNS NORs, APP expression co-localizes with tenascin-R and is flanked by juxtaparanodal potassium channel expression demonstrating that APP localized to NOR. In APP-knockout (KO) mice, nodal length is significantly increased, while sodium channels are still clustered at NORs. Moreover, APP KO and APP-overexpressing transgenic (APP TG) mice exhibited a decreased and an increased thickness of myelin in spinal cords, respectively, although the changes are limited in comparison to their littermate WT mice. The thickness of myelin in APP KO sciatic nerve also increased in comparison to that in WT mice. Our observations indicate that APP acts as a novel component at CNS NORs, modulating nodal formation and has minor effects in promoting myelination.
Central Nervous System, Mice, Knockout, Tenascin, Sciatic Nerve, Axons, Sodium Channels, Amyloid beta-Protein Precursor, Mice, Spinal Cord, Peripheral Nervous System, Ranvier's Nodes, Animals, Myelin Sheath, Demyelinating Diseases
Central Nervous System, Mice, Knockout, Tenascin, Sciatic Nerve, Axons, Sodium Channels, Amyloid beta-Protein Precursor, Mice, Spinal Cord, Peripheral Nervous System, Ranvier's Nodes, Animals, Myelin Sheath, Demyelinating Diseases
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