The Pathogenic Sphingolipid Psychosine is Secreted in Extracellular Vesicles in the Brain of a Mouse Model of Krabbe Disease

Author:

Reiter Cory R.1ORCID,Rebiai Rima1,Kwak Angelika1,Marshall Jeff1,Wozniak Dylan1,Scesa Giusepe1,Nguyen Duc1,Rue Emily2,Pathmasiri Koralege C.3,Pijewski Robert4,van Breemen Richard2,Cologna Stephanie3,Crocker Stephen J.4,Givogri M Irene1,Bongarzone Ernesto R1ORCID

Affiliation:

1. Department of Anatomy and Cell Biology, College of Medicine, University of Illinois at Chicago, Chicago, IL, USA

2. Department of Pharmaceutical Science, College of Pharmacy, Oregon State University, Corvallis, OR, USA

3. Department of Chemistry, College of Liberal Arts and Sciences, University of Illinois at Chicago, Chicago, IL, USA

4. Department of Neuroscience, University of Connecticut Health Center, Farmington, CT, USA

Abstract

Psychosine exerts most of its toxic effects by altering membrane dynamics with increased shedding of extracellular vesicles (EVs). In this study, we discovered that a fraction of psychosine produced in the brain of the Twitcher mouse, a model for Krabbe disease, is associated with secreted EVs. We evaluated the effects of attenuating EV secretion in the Twitcher brain by depleting ceramide production with an inhibitor of neutral sphingomyelinase 2, GW4869. Twitcher mice treated with GW4869 had decreased overall EV levels, reduced EV-associated psychosine and unexpectedly, correlated with increased disease severity. Notably, characterization of well-established, neuroanatomic hallmarks of disease pathology, such as demyelination and inflammatory gliosis, remained essentially unaltered in the brains of GW4869-treated Twitcher mice compared to vehicle-treated Twitcher controls. Further analysis of Twitcher brain pathophysiology is required to understand the mechanism behind early-onset disease severity in GW4869-treated mice. The results herein demonstrate that some pathogenic lipids like psychosine may be secreted using EV pathways. Our results highlight the relevance of this secretory mechanism as a possible contributor to spreading pathogenic lipids in neurological lipidoses.

Funder

Legacy of Angels Foundation

National Institute of Neurological Disorders and Stroke

Association Européenne contre les Leucodystrophies

Publisher

SAGE Publications

Subject

Neurology (clinical),General Neuroscience

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