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- 1-O-cholesteryl-β-D-glucoside1
- 1-O-cholesteryl-β-D-xylose1
- 25-[N-[(7-nitro-2-1,3-benzoxadiazol-4-yl) methyl] amino]-27-norcholesterol1
- 25-NBD-cholesterol1
- 4-methylumbelliferyl-β-D-glucose1
- 4-methylumbelliferyl-β-D-xylose1
- 4-MU-β-Glc1
- 4-MU-β-Xyl1
- 6-((N-(7-Nitrobenz-2-Oxa-1,3-Diazol-4-yl)amino)hexanoyl)sphingosine1
- CBE1
- GalCer1
- GalChol1
- Gaucher disease1
- GBA1
- GCS1
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- GlcChol1
- NBD C6- ceramide1
- Niemann-Pick type C disease1
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Regular Research Articles
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- Research ArticleOpen Access
Human glucocerebrosidase mediates formation of xylosyl-cholesterol by β-xylosidase and transxylosidase reactions
Journal of Lipid ResearchVol. 62100018Published online: January 5, 2021- Daphne E. Boer
- Mina Mirzaian
- Maria J. Ferraz
- Kimberley C. Zwiers
- Merel V. Baks
- Marc D. Hazeu
- and others
Cited in Scopus: 0Deficiency of glucocerebrosidase (GBA), a lysosomal β-glucosidase, causes Gaucher disease. The enzyme hydrolyzes β-glucosidic substrates and transglucosylates cholesterol to cholesterol-β-glucoside. Here we show that recombinant human GBA also cleaves β-xylosides and transxylosylates cholesterol. The xylosyl-cholesterol formed acts as an acceptor for the subsequent formation of di-xylosyl-cholesterol. Common mutant forms of GBA from patients with Gaucher disease with reduced β-glucosidase activity were similarly impaired in β-xylosidase, transglucosidase, and transxylosidase activities, except for a slightly reduced xylosidase/glucosidase activity ratio of N370S GBA and a slightly reduced transglucosylation/glucosidase activity ratio of D409H GBA.