4.6 Article

Consequences of excessive glucosyls glucocerebrosidase-deficient zebrafish

期刊

JOURNAL OF LIPID RESEARCH
卷 63, 期 5, 页码 -

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ELSEVIER
DOI: 10.1016/j.jlr.2022.100199

关键词

Gaucher disease; acid ceramidase; lipid metabolism; zebrafish; glucosylceramide; sphingolipids; lysosphingolipids; dopaminergic neurons

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  1. [737.016.022]

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In Gaucher disease, excessive GlcSph has little impact on (neuro)inflammation or GlcCer-laden macrophages, but rather seems harmful to th1-positive dopaminergic neurons.
In Gaucher disease (GD), the deficiency of glucocerebrosidase causes lysosomal accumulation of glucosylceramide (GlcCer), which is partly converted by acid ceramidase to glucosylsphingosine (GlcSph) in the lysosome. Chronically elevated blood and tissue GlcSph is thought to contribute to symptoms in GD patients as well as to increased risk for Parkinson's disease. On the other hand, formation of GlcSph may be beneficial since the water soluble sphingoid base is excreted via urine and bile. To study the role of exces-sive GlcSph formation during glucocerebrosidase deficiency, we studied zebrafish that have two ortho-logs of acid ceramidase, Asah1a and Asah1b. Only the latter is involved in the formation of GlcSph in glucocerebrosidase-deficient zebrafish as revealed by knockouts of Asah1a or Asah1b with glucocerebrosidase deficiency (either pharmacologically induced or ge-netic). Comparison of zebrafish with excessive GlcSph (gba1-/-fish) and without GlcSph (gba1(-/-):asah1b(-/-)fish) allowed us to study the consequences of chronic high levels of GlcSph. Prevention of excessive GlcSph in gba1-/-:asah1b-/-fish did not restrict storage cells, GlcCer accumulation, or neuroinflammation. However, GD fish lacking excessive GlcSph show an ameliorated course of disease reflected by significantly increased lifespan, delayed locomotor abnormality, and delayed development of an abnormal curved back posture. The loss of tyrosine hydroxylase 1 (th1) mRNA, a marker of dopaminergic neurons, is slowed down in brain of GD fish lacking excessive GlcSph. In conclusion, in the zebrafish GD model, excess GlcSph has little impact on (neuro)inflammation or the presence of GlcCer-laden macrophages but rather seems harmful to th1-positive dopaminergic neurons.

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