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Activity-Based Probes for Glycosidases: Profiling and Other Applications

Authors :
Eline van Meel
Martin D. Witte
Chi-Lin Kuo
Johannes M. F. G. Aerts
Kassiani Kytidou
Wouter W. Kallemeijn
Herman S. Overkleeft
Marta Artola
Medical Biochemistry
ACS - Amsterdam Cardiovascular Sciences
AGEM - Amsterdam Gastroenterology Endocrinology Metabolism
Source :
Methods in Enzymology, 598, 217-235
Publication Year :
2018
Publisher :
Elsevier, 2018.

Abstract

Glycosidases mediate the fragmentation of glycoconjugates in the body, including the vital recycling of endogenous molecules. Several inherited diseases in man concern deficiencies in lysosomal glycosidases degrading glycosphingolipids. Prominent is Gaucher disease caused by an impaired lysosomal β-glucosidase (glucocerebrosidase, GBA) and resulting in pathological lysosomal storage of glucosylceramide (glucocerebroside) in tissue macrophages. GBA is a retaining glucosidase with a characteristic glycosyl–enzyme intermediate formed during catalysis. Using the natural suicide inhibitor cyclophellitol as a lead, we developed mechanism-based irreversible inhibitors of GBA equipped with a fluorescent reporter. These reagents covalently link to the catalytic nucleophile residue of GBA and permit specific and sensitive visualization of active enzyme molecules. The amphiphilic activity-based probes (ABPs) allow in situ detection of active GBA in cells and organisms. Furthermore, they may be used to biochemically confirm the diagnosis of Gaucher disease and they might assist in screening for small compounds interacting with the catalytic pocket. While the focus of this chapter is ABPs for β-glucosidases and Gaucher disease, the described concept has meanwhile been extended to other retaining glycosidases and related disease conditions as well.

Details

Database :
OpenAIRE
Journal :
Methods in Enzymology, 598, 217-235
Accession number :
edsair.doi.dedup.....965facd53c075884edf9f2b336bb8842
Full Text :
https://doi.org/10.1016/bs.mie.2017.06.039