Modulation of amyloid precursor protein processing by synthetic ceramide analogues |
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Authors: | Hongyun Li Woojin S. Kim Gilles J. Guillemin Andrew F. Hill Genevieve Evin Brett Garner |
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Affiliation: | 1. Prince of Wales Medical Research Institute, Randwick NSW 2031, Australia;2. School of Medical Sciences, Faculty of Medicine, University of New South Wales, Sydney NSW 2052, Australia;3. Department of Biochemistry and Molecular Biology, Bio21 Institute, University of Melbourne, VIC 3010, Australia;4. Mental Health Research Institute of Victoria, VIC 3010, Australia;5. Department of Pathology, University of Melbourne, VIC 3010, Australia;6. School of Biological Sciences, Faculty of Science, University of Wollongong, Wollongong NSW 2522, Australia |
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Abstract: | Previous studies suggest that membrane lipids may regulate proteolytic processing of the amyloid precursor protein (APP) to generate amyloid-beta peptide (Abeta). In the present study, we have assessed the capacity for a series of structurally related synthetic ceramide analogues to modulate APP processing in vitro. The compounds tested are established glucosylceramide synthase (GS) inhibitors based on the d-1-phenyl-2-decanoylamino-3-morpholino-1-propanol (PDMP) structure. PDMP and related compounds PPMP and EtDO-P4 inhibited Abeta secretion from Chinese hamster ovary cells expressing human APP (CHO-APP) with approximate IC50 values of 15, 5, and 1 μM, respectively. A trend for reduced secretion of the APP alpha-secretase product, sAPPalpha, was also observed in PDMP-treated cells but not in PPMP- or ETDO-P4-treated cells, whereas levels of the cellular beta-secretase product APP C-terminal fragment, CTFbeta, were increased by both PDMP and PPMP but unaltered with EtDO-P4 treatment. Our data also revealed that EtDO-P4 inhibits endogenous Abeta production by human neurons. In conclusion, this study provides novel information regarding the regulation of APP processing by synthetic ceramide analogues and reveals that the most potent of these compounds is EtDO-P4. |
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Keywords: | Glycosphingolipid Sphingolipids Amyloid precursor protein Alzheimer's disease Neurodegeneration Amyloid-beta peptide |
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