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PMID: 17095274 Published · ppublish English Journal Article

Chemical chaperones improve transport and enhance stability of mutant alpha-glucosidases in glycogen storage disease type II.

Molecular genetics and metabolism ·Vol. 90 ·No. 1 ·2007-01-00 ·Pages 49-57

Okumiya T, Kroos MA, Vliet LV, Takeuchi H, Van der Ploeg AT, Reuser AJ

Abstract

Glycogen storage disease type II (GSDII; Pompe disease or acid maltase deficiency) is an autosomal recessive disorder caused by lysosomal acid alpha-glucosidase (AalphaGlu) deficiency and manifests predominantly as skeletal muscle weakness. Defects in post-translational modification and transport of mutant AalphaGlu species are frequently encountered and may potentially be corrected with chaperone-mediated therapy. In the present study, we have tested this hypothesis by using deoxynojirimycin and derivatives as chemical chaperones to correct the AalphaGlu deficiency in cultured fibroblasts from patients with GSDII. Four mutant phenotypes were chosen: Y455F/Y455F, P545L/P545L, 525del/R600C and D645E/R854X. In case of Y455F/Y455F and P545L/P545L, N-(n-butyl)deoxynojirimycin (NB-DNJ) restored the transport, maturation and activity of AalphaGlu in a dose dependent manner, while it had no effect on the reference enzyme beta-hexosaminidase. NB-DNJ promoted export from the endoplasmic reticulum (ER) to the lysosomes and stabilized the activity of mutant AalphaGlu species, Y455F and P545L, inside the lysosomes. In long-term culture, the AalphaGlu activity in the fibroblasts from the patients with mutant phenotypes, Y455F/Y455F and P545L/P545L, increased up to 14.0- and 7.9-fold, respectively, in the presence of 10mumol/L NB-DNJ. However, the effect of NB-DNJ on Y455F/Y455F subsided quickly after removal of the compound. We conclude that NB-DNJ acts in low concentration as chemical chaperone for certain mutant forms of AalphaGlu that are trapped in the ER, poorly transported or labile in the lysosomal environment. Chemical chaperone therapy could create new perspectives for therapeutic intervention in GSDII.

MeSH Terms
1-Deoxynojirimycin/pharmacology Adolescent Adult Amino Acid Substitution/genetics Animals COS Cells Cells, Cultured Child, Preschool Chlorocebus aethiops Enzyme Inhibitors/pharmacology Enzyme Stability/drug effects,physiology Glycogen Storage Disease Type II/enzymology,genetics Glycoside Hydrolase Inhibitors Humans Infant Molecular Chaperones/administration & dosage,physiology Protein Transport/drug effects,physiology Sequence Deletion alpha-Glucosidases/genetics,metabolism
Chemicals
Enzyme Inhibitors Glycoside Hydrolase Inhibitors Molecular Chaperones 1-Deoxynojirimycin alpha-Glucosidases
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Okumiya Toshika
Department of Clinical Genetics, Erasmus MC, PO Box 2040, 3000 CA Rotterdam, The Netherlands. okumiyat@hs.kumamoto-u.ac.jp
Kroos Marian A
Vliet Laura Van
Takeuchi Hiroaki
Van der Ploeg Ans T
Reuser Arnold J J
Article Info
Journal
Molecular genetics and metabolism
Abbr.
Mol Genet Metab
ISSN
1096-7192
Published
2007-01-00
Epub
2006-00-13
Pages
49-57
Language
English
Region
United States
NLM ID
9805456
Subset
IM
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