Mutation in saposin D domain of sphingolipid activator protein gene causes urinary system defects and cerebellar Purkinje cell degeneration with accumulation of hydroxy fatty acid-containing ceramide in mouse
Open Access
- 2 September 2004
- journal article
- research article
- Published by Oxford University Press (OUP) in Human Molecular Genetics
- Vol. 13 (21) , 2709-2723
- https://doi.org/10.1093/hmg/ddh281
Abstract
The sphingolipid activator proteins (saposins A, B, C and D) are small homologous glycoproteins that are encoded by a single gene in tandem within a large precursor protein (prosaposin) and are required for in vivo degradation of some sphingolipids with relatively short carbohydrate chains. Human patients with prosaposin or specific saposin B or C deficiency are known, and prosaposin- and saposin A-deficient mouse lines have been generated. Experimental evidence suggests that saposin D may be a lysosomal acid ceramidase activator. However, no specific saposin D deficiency state is known in any mammalian species. We have generated a specific saposin D−/− mouse by introducing a mutation (C509S) into the saposin D domain of the mouse prosaposin gene. Saposin D−/− mice developed progressive polyuria at around 2 months and ataxia at around 4 months. Pathologically, the kidney of saposin D−/− mice showed renal tubular degeneration and eventual hydronephrosis. In the nervous system, progressive and selective loss of the cerebellar Purkinje cells in a striped pattern was conspicuous, and almost all Purkinje cells disappeared by 12 months. Biochemically, ceramides, particularly those containing hydroxy fatty acids accumulated in the kidney and the brain, most prominently in the cerebellum. These results not only indicate the role of saposin D in in vivo ceramide metabolism, but also suggest possible cytotoxicity of ceramide underlying the cerebellar Purkinje cell and renal tubular cell degeneration.Keywords
This publication has 54 references indexed in Scilit:
- Lipid Rafts in the Maintenance of Synapses, Dendritic Spines, and Surface AMPA Receptor StabilityJournal of Neuroscience, 2003
- A Role for Lipid Shells in Targeting Proteins to Caveolae, Rafts, and Other Lipid DomainsScience, 2002
- Dramatic phenotypic improvement during pregnancy in a genetic leukodystrophy: estrogen appears to be a critical factorHuman Molecular Genetics, 2001
- A mutation in the saposin A domain of the sphingolipid activator protein (prosaposin) gene results in a late-onset, chronic form of globoid cell leukodystrophy in the mouseHuman Molecular Genetics, 2001
- Cell adhesion/recognition and signal transduction through glycosphingolipid microdomainGlycoconjugate Journal, 2000
- Targeted disruption of the mouse sphingolipid activator protein gene: a complex phenotype, including severe leukodystrophy and wide-spread storage of multiple sphingolipidsHuman Molecular Genetics, 1996
- Stimulation of Acid Ceramidase Activity by Saposin DArchives of Biochemistry and Biophysics, 1994
- Sphingolipid Activator Protein D (sap-D) Stimulates the Lysosomal Degradation of Ceramide in VivoBiochemical and Biophysical Research Communications, 1994
- Immunochemical Characterization of Two Activator Proteins Stimulating Enzymic Sphingomyelin Degradation in vitro Absence of One of them in a Human Gaucher Disease VariantBiological Chemistry Hoppe-Seyler, 1986
- Inborn Lysosomal DiseasesGastroenterology, 1965