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Mechanistic Insight into the Mode of Action of Acid ß-Glucosidase Enhancer Ambroxol.
Pantoom, Supansa; Hules, Larissa; Schöll, Christopher; Petrosyan, Andranik; Monticelli, Maria; Pospech, Jola; Cubellis, Maria Vittoria; Hermann, Andreas; Lukas, Jan.
Afiliação
  • Pantoom S; Translational Neurodegeneration Section "Albrecht-Kossel", Department of Neurology, University Medical Center Rostock, 18147 Rostock, Germany.
  • Hules L; Translational Neurodegeneration Section "Albrecht-Kossel", Department of Neurology, University Medical Center Rostock, 18147 Rostock, Germany.
  • Schöll C; Leibniz Institute for Catalysis, University of Rostock, 18059 Rostock, Germany.
  • Petrosyan A; Leibniz Institute for Catalysis, University of Rostock, 18059 Rostock, Germany.
  • Monticelli M; Department of Biology, University Federico II, 80126 Napoli, Italy.
  • Pospech J; Leibniz Institute for Catalysis, University of Rostock, 18059 Rostock, Germany.
  • Cubellis MV; Department of Biology, University Federico II, 80126 Napoli, Italy.
  • Hermann A; Istituto di Chimica Biomolecolare-CNR, 80078 Pozzuoli, Italy.
  • Lukas J; Translational Neurodegeneration Section "Albrecht-Kossel", Department of Neurology, University Medical Center Rostock, 18147 Rostock, Germany.
Int J Mol Sci ; 23(7)2022 Mar 24.
Article em En | MEDLINE | ID: mdl-35408914
ABSTRACT
Ambroxol (ABX) is a mucolytic agent used for the treatment of respiratory diseases. Bioactivity has been demonstrated as an enhancement effect on lysosomal acid ß-glucosidase (ß-Glu) activity in Gaucher disease (GD). The positive effects observed have been attributed to a mechanism of action similar to pharmacological chaperones (PCs), but an exact mechanistic description is still pending. The current study uses cell culture and in vitro assays to study the effects of ABX on ß-Glu activity, processing, and stability upon ligand binding. Structural analogues bromohexine, 4-hydroxybromohexine, and norbromohexine were screened for chaperone efficacy, and in silico docking was performed. The sugar mimetic isofagomine (IFG) strongly inhibits ß-Glu, while ABX exerts its inhibitory effect in the micromolar range. In GD patient fibroblasts, IFG and ABX increase mutant ß-Glu activity to identical levels. However, the characteristics of the banding patterns of Endoglycosidase-H (Endo-H)-digested enzyme and a substantially lower half-life of ABX-treated ß-Glu suggest different intracellular processing. In line with this observation, IFG efficiently stabilizes recombinant ß-Glu against thermal denaturation in vitro, whereas ABX exerts no significant effect. Additional ß-Glu enzyme activity testing using Bromohexine (BHX) and two related structures unexpectedly revealed that ABX alone can refunctionalize ß-Glu in cellula. Taken together, our data indicate that ABX has little in vitro ability to act as PC, so the mode of action requires further clarification.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Ambroxol / Doença de Gaucher Limite: Humans Idioma: En Revista: Int J Mol Sci Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Alemanha

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Ambroxol / Doença de Gaucher Limite: Humans Idioma: En Revista: Int J Mol Sci Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Alemanha
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