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Fluorescence polarisation activity-based protein profiling for the identification of deoxynojirimycin-type inhibitors selective for lysosomal retaining alpha- and beta-glucosidases

Lysosomal exoglycosidases are responsible for processing endocytosed glycans from the non-reducing end to produce the corresponding monosaccharides. Genetic mutations in a particular lysosomal glycosidase may result in accumulation of its particular substrate, which may cause diverse lysosomal stora...

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Autores principales: van der Gracht, Daniël, Rowland, Rhianna J., Roig-Zamboni, Véronique, Ferraz, Maria J., Louwerse, Max, Geurink, Paul P., Aerts, Johannes M. F. G., Sulzenbacher, Gerlind, Davies, Gideon J., Overkleeft, Herman S., Artola, Marta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10466331/
https://www.ncbi.nlm.nih.gov/pubmed/37655021
http://dx.doi.org/10.1039/d3sc01021j
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author van der Gracht, Daniël
Rowland, Rhianna J.
Roig-Zamboni, Véronique
Ferraz, Maria J.
Louwerse, Max
Geurink, Paul P.
Aerts, Johannes M. F. G.
Sulzenbacher, Gerlind
Davies, Gideon J.
Overkleeft, Herman S.
Artola, Marta
author_facet van der Gracht, Daniël
Rowland, Rhianna J.
Roig-Zamboni, Véronique
Ferraz, Maria J.
Louwerse, Max
Geurink, Paul P.
Aerts, Johannes M. F. G.
Sulzenbacher, Gerlind
Davies, Gideon J.
Overkleeft, Herman S.
Artola, Marta
author_sort van der Gracht, Daniël
collection PubMed
description Lysosomal exoglycosidases are responsible for processing endocytosed glycans from the non-reducing end to produce the corresponding monosaccharides. Genetic mutations in a particular lysosomal glycosidase may result in accumulation of its particular substrate, which may cause diverse lysosomal storage disorders. The identification of effective therapeutic modalities to treat these diseases is a major yet poorly realised objective in biomedicine. One common strategy comprises the identification of effective and selective competitive inhibitors that may serve to stabilize the proper folding of the mutated enzyme, either during maturation and trafficking to, or residence in, endo-lysosomal compartments. The discovery of such inhibitors is greatly aided by effective screening assays, the development of which is the focus of the here-presented work. We developed and applied fluorescent activity-based probes reporting on either human GH30 lysosomal glucosylceramidase (GBA1, a retaining β-glucosidase) or GH31 lysosomal retaining α-glucosidase (GAA). FluoPol-ABPP screening of our in-house 358-member iminosugar library yielded compound classes selective for either of these enzymes. In particular, we identified a class of N-alkyldeoxynojirimycins that inhibit GAA, but not GBA1, and that may form the starting point for the development of pharmacological chaperone therapeutics for the lysosomal glycogen storage disease that results from genetic deficiency in GAA: Pompe disease.
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spelling pubmed-104663312023-08-31 Fluorescence polarisation activity-based protein profiling for the identification of deoxynojirimycin-type inhibitors selective for lysosomal retaining alpha- and beta-glucosidases van der Gracht, Daniël Rowland, Rhianna J. Roig-Zamboni, Véronique Ferraz, Maria J. Louwerse, Max Geurink, Paul P. Aerts, Johannes M. F. G. Sulzenbacher, Gerlind Davies, Gideon J. Overkleeft, Herman S. Artola, Marta Chem Sci Chemistry Lysosomal exoglycosidases are responsible for processing endocytosed glycans from the non-reducing end to produce the corresponding monosaccharides. Genetic mutations in a particular lysosomal glycosidase may result in accumulation of its particular substrate, which may cause diverse lysosomal storage disorders. The identification of effective therapeutic modalities to treat these diseases is a major yet poorly realised objective in biomedicine. One common strategy comprises the identification of effective and selective competitive inhibitors that may serve to stabilize the proper folding of the mutated enzyme, either during maturation and trafficking to, or residence in, endo-lysosomal compartments. The discovery of such inhibitors is greatly aided by effective screening assays, the development of which is the focus of the here-presented work. We developed and applied fluorescent activity-based probes reporting on either human GH30 lysosomal glucosylceramidase (GBA1, a retaining β-glucosidase) or GH31 lysosomal retaining α-glucosidase (GAA). FluoPol-ABPP screening of our in-house 358-member iminosugar library yielded compound classes selective for either of these enzymes. In particular, we identified a class of N-alkyldeoxynojirimycins that inhibit GAA, but not GBA1, and that may form the starting point for the development of pharmacological chaperone therapeutics for the lysosomal glycogen storage disease that results from genetic deficiency in GAA: Pompe disease. The Royal Society of Chemistry 2023-08-08 /pmc/articles/PMC10466331/ /pubmed/37655021 http://dx.doi.org/10.1039/d3sc01021j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
van der Gracht, Daniël
Rowland, Rhianna J.
Roig-Zamboni, Véronique
Ferraz, Maria J.
Louwerse, Max
Geurink, Paul P.
Aerts, Johannes M. F. G.
Sulzenbacher, Gerlind
Davies, Gideon J.
Overkleeft, Herman S.
Artola, Marta
Fluorescence polarisation activity-based protein profiling for the identification of deoxynojirimycin-type inhibitors selective for lysosomal retaining alpha- and beta-glucosidases
title Fluorescence polarisation activity-based protein profiling for the identification of deoxynojirimycin-type inhibitors selective for lysosomal retaining alpha- and beta-glucosidases
title_full Fluorescence polarisation activity-based protein profiling for the identification of deoxynojirimycin-type inhibitors selective for lysosomal retaining alpha- and beta-glucosidases
title_fullStr Fluorescence polarisation activity-based protein profiling for the identification of deoxynojirimycin-type inhibitors selective for lysosomal retaining alpha- and beta-glucosidases
title_full_unstemmed Fluorescence polarisation activity-based protein profiling for the identification of deoxynojirimycin-type inhibitors selective for lysosomal retaining alpha- and beta-glucosidases
title_short Fluorescence polarisation activity-based protein profiling for the identification of deoxynojirimycin-type inhibitors selective for lysosomal retaining alpha- and beta-glucosidases
title_sort fluorescence polarisation activity-based protein profiling for the identification of deoxynojirimycin-type inhibitors selective for lysosomal retaining alpha- and beta-glucosidases
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10466331/
https://www.ncbi.nlm.nih.gov/pubmed/37655021
http://dx.doi.org/10.1039/d3sc01021j
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