| Literature DB >> 28171725 |
M Isabel García-Moreno1, Mario de la Mata2, Elena M Sánchez-Fernández1, Juan M Benito3, Antonio Díaz-Quintana3, Santos Fustero4,5, Eiji Nanba6, Katsumi Higaki6, José A Sánchez-Alcázar2, José M García Fernández3, Carmen Ortiz Mellet1.
Abstract
Amphiphilic glycomimetics encompassing a rigid, undistortable nortropane skeleton based on 1,6-anhydro-l-idonojirimycin and a polyfluorinated antenna, when formulated as the corresponding inclusion complexes with β-cyclodextrin (βCD), have been shown to behave as pharmacological chaperones (PCs) that efficiently rescue lysosomal β-glucocerebrosidase mutants associated with the neuronopathic variants of Gaucher disease (GD), including the highly refractory L444P/L444P and L444P/P415R single nucleotide polymorphs, in patient fibroblasts. The body of work here presented includes the design criteria for the PC prototype, the synthesis of a series of candidates, the characterization of the PC:βCD complexes, the determination of the selectivity profiles toward a panel of commercial and human lysosomal glycosidases, the evaluation of the chaperoning activity in type 1 (non-neuronopathic), type 2 (acute neuronopathic), and type 3 (adult neuronopathic) GD fibroblasts, the confirmation of the rescuing mechanism by immunolabeling, and the analysis of the PC:GCase binding mode by docking experiments.Entities:
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Year: 2017 PMID: 28171725 DOI: 10.1021/acs.jmedchem.6b01550
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446