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HEPES‐buffering of bicarbonate‐containing culture medium perturbs lysosomal glucocerebrosidase activity

Glucocerebrosidase (GCase), encoded by the GBA gene, degrades the ubiquitous glycosphingolipid glucosylceramide. Inherited GCase deficiency causes Gaucher disease (GD). In addition, carriers of an abnormal GBA allele are at increased risk for Parkinson's disease. GCase undergoes extensive modif...

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Autores principales: van der Lienden, Martijn J. C., Aten, Jan, Boot, Rolf G., van Eijk, Marco, Aerts, Johannes M. F. G., Kuo, Chi‐Lin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9314694/
https://www.ncbi.nlm.nih.gov/pubmed/35312102
http://dx.doi.org/10.1002/jcb.30234
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author van der Lienden, Martijn J. C.
Aten, Jan
Boot, Rolf G.
van Eijk, Marco
Aerts, Johannes M. F. G.
Kuo, Chi‐Lin
author_facet van der Lienden, Martijn J. C.
Aten, Jan
Boot, Rolf G.
van Eijk, Marco
Aerts, Johannes M. F. G.
Kuo, Chi‐Lin
author_sort van der Lienden, Martijn J. C.
collection PubMed
description Glucocerebrosidase (GCase), encoded by the GBA gene, degrades the ubiquitous glycosphingolipid glucosylceramide. Inherited GCase deficiency causes Gaucher disease (GD). In addition, carriers of an abnormal GBA allele are at increased risk for Parkinson's disease. GCase undergoes extensive modification of its four N‐glycans en route to and inside the lysosome that is reflected in changes in molecular weight as detected with sodium dodecyl sulfate‐polyacrylamide gel electrophoresis. Fluorescent activity‐based probes (ABPs) that covalently label GCase in reaction‐based manner in vivo and in vitro allow sensitive visualization of GCase molecules. Using these ABPs, we studied the life cycle of GCase in cultured fibroblasts and macrophage‐like RAW264.7 cells. Specific attention was paid to the impact of 4‐(2‐hydroxyethyl)‐1‐piperazineethanesulfonic acid (HEPES) supplementation to bicarbonate‐buffered medium. Here, we report how HEPES‐buffered medium markedly influences processing of GCase, its lysosomal degradation, and the total cellular enzyme level. HEPES‐containing medium was also found to reduce maturation of other lysosomal enzymes (α‐glucosidase and β‐glucuronidase) in cells. The presence of HEPES in bicarbonate containing medium increases GCase activity in GD‐patient derived fibroblasts, illustrating how the supplementation of HEPES complicates the use of cultured cells for diagnosing GD.
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spelling pubmed-93146942022-07-30 HEPES‐buffering of bicarbonate‐containing culture medium perturbs lysosomal glucocerebrosidase activity van der Lienden, Martijn J. C. Aten, Jan Boot, Rolf G. van Eijk, Marco Aerts, Johannes M. F. G. Kuo, Chi‐Lin J Cell Biochem Research Articles Glucocerebrosidase (GCase), encoded by the GBA gene, degrades the ubiquitous glycosphingolipid glucosylceramide. Inherited GCase deficiency causes Gaucher disease (GD). In addition, carriers of an abnormal GBA allele are at increased risk for Parkinson's disease. GCase undergoes extensive modification of its four N‐glycans en route to and inside the lysosome that is reflected in changes in molecular weight as detected with sodium dodecyl sulfate‐polyacrylamide gel electrophoresis. Fluorescent activity‐based probes (ABPs) that covalently label GCase in reaction‐based manner in vivo and in vitro allow sensitive visualization of GCase molecules. Using these ABPs, we studied the life cycle of GCase in cultured fibroblasts and macrophage‐like RAW264.7 cells. Specific attention was paid to the impact of 4‐(2‐hydroxyethyl)‐1‐piperazineethanesulfonic acid (HEPES) supplementation to bicarbonate‐buffered medium. Here, we report how HEPES‐buffered medium markedly influences processing of GCase, its lysosomal degradation, and the total cellular enzyme level. HEPES‐containing medium was also found to reduce maturation of other lysosomal enzymes (α‐glucosidase and β‐glucuronidase) in cells. The presence of HEPES in bicarbonate containing medium increases GCase activity in GD‐patient derived fibroblasts, illustrating how the supplementation of HEPES complicates the use of cultured cells for diagnosing GD. John Wiley and Sons Inc. 2022-03-21 2022-05 /pmc/articles/PMC9314694/ /pubmed/35312102 http://dx.doi.org/10.1002/jcb.30234 Text en © 2022 The Authors. Journal of Cellular Biochemistry published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
van der Lienden, Martijn J. C.
Aten, Jan
Boot, Rolf G.
van Eijk, Marco
Aerts, Johannes M. F. G.
Kuo, Chi‐Lin
HEPES‐buffering of bicarbonate‐containing culture medium perturbs lysosomal glucocerebrosidase activity
title HEPES‐buffering of bicarbonate‐containing culture medium perturbs lysosomal glucocerebrosidase activity
title_full HEPES‐buffering of bicarbonate‐containing culture medium perturbs lysosomal glucocerebrosidase activity
title_fullStr HEPES‐buffering of bicarbonate‐containing culture medium perturbs lysosomal glucocerebrosidase activity
title_full_unstemmed HEPES‐buffering of bicarbonate‐containing culture medium perturbs lysosomal glucocerebrosidase activity
title_short HEPES‐buffering of bicarbonate‐containing culture medium perturbs lysosomal glucocerebrosidase activity
title_sort hepes‐buffering of bicarbonate‐containing culture medium perturbs lysosomal glucocerebrosidase activity
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9314694/
https://www.ncbi.nlm.nih.gov/pubmed/35312102
http://dx.doi.org/10.1002/jcb.30234
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