Publication | Open Access
A role for myelin-associated peroxisomes in maintaining paranodal loops and axonal integrity
49
Citations
21
References
2011
Year
Paranodal LoopsPeripheral NerveCellular NeurobiologyCellular PhysiologySocial SciencesNeuroregenerationExperimental NeuropathologyMyelin-forming Glia PeroxisomesNeurologyAxonal IntegrityNeuropathologyNeuroimmunologyPeripheral Myelin CompartmentNeurological FunctionMyelin-associated PeroxisomesMolecular NeuroscienceNervous SystemMyelin MembranesNeurodegenerative DiseasesDevelopmental BiologyNeurophysiologyNeuroanatomyPhysiologyNeuroscienceCentral Nervous SystemMedicine
Demyelinating diseases of the nervous system cause axon loss but the underlying mechanisms are not well understood. Here we show by confocal and electron microscopy that in myelin-forming glia peroxisomes are associated with myelin membranes. When peroxisome biogenesis is experimentally perturbed in Pex5 conditional mouse mutants, myelination by Schwann cells appears initially normal. However, in nerves of older mice paranodal loops become physically unstable and develop swellings filled with vesicles and electron-dense material. This novel model of a demyelinating neuropathy demonstrates that peroxisomes serve an important function in the peripheral myelin compartment, required for long-term axonal integrity.
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