Peroxisomal dysfunctions cause lysosomal storage and axonal Kv1 channel redistribution in peripheral neuropathy

Author:

Kleinecke Sandra1,Richert Sarah1,de Hoz Livia1,Brügger Britta2,Kungl Theresa1,Asadollahi Ebrahim1,Quintes Susanne1,Blanz Judith3,McGonigal Rhona4,Naseri Kobra5,Sereda Michael W1,Sachsenheimer Timo2,Lüchtenborg Christian2,Möbius Wiebke1ORCID,Willison Hugh4,Baes Myriam6,Nave Klaus-Armin1ORCID,Kassmann Celia Michèle1ORCID

Affiliation:

1. Department of Neurogenetics, Max Planck Institute of Experimental Medicine, Göttingen, Germany

2. University of Heidelberg, Biochemistry Center (BZH), Heidelberg, Germany

3. Unit of Molecular Cell Biology and Transgenic, Institute of Biochemistry, University of Kiel, Kiel, Germany

4. Institute of Infection, Immunity, and Inflammation, University of Glasgow, Glasgow, United Kingdom

5. Birjand University of Medical Sciences, Birjand, Iran

6. Department of Pharmaceutical and Pharmacological Sciences, Cell Metabolism, KU Leuven- University of Leuven, Leuven, Belgium

Abstract

Impairment of peripheral nerve function is frequent in neurometabolic diseases, but mechanistically not well understood. Here, we report a novel disease mechanism and the finding that glial lipid metabolism is critical for axon function, independent of myelin itself. Surprisingly, nerves of Schwann cell-specific Pex5 mutant mice were unaltered regarding axon numbers, axonal calibers, and myelin sheath thickness by electron microscopy. In search for a molecular mechanism, we revealed enhanced abundance and internodal expression of axonal membrane proteins normally restricted to juxtaparanodal lipid-rafts. Gangliosides were altered and enriched within an expanded lysosomal compartment of paranodal loops. We revealed the same pathological features in a mouse model of human Adrenomyeloneuropathy, preceding disease-onset by one year. Thus, peroxisomal dysfunction causes secondary failure of local lysosomes, thereby impairing the turnover of gangliosides in myelin. This reveals a new aspect of axon-glia interactions, with Schwann cell lipid metabolism regulating the anchorage of juxtaparanodal Kv1-channels.

Funder

Deutsche Forschungsgemeinschaft

European Commission

Olivers Army

Myelin Project

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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