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1.
Org Biomol Chem ; 12(44): 8977-96, 2014 Nov 28.
Article in English | MEDLINE | ID: mdl-25277226

ABSTRACT

The glycosidase inhibitory properties of synthetic C-alkyl and N-alkyl six-membered iminosugars have been extensively studied leading to therapeutic candidates. The related seven-membered iminocyclitols have been less examined despite the report of promising structures. Using an in house ring enlargement/C-alkylation as well as cross-metathesis methodologies as the key steps, we have undertaken the synthesis and biological evaluation of a library of fourteen 2C- and eight N-alkyl tetrahydroxylated azepanes starting from an easily available glucopyranose-derived azidolactol. Four, six, nine and twelve carbon atom alkyl chains have been introduced. The study of two distinct D-gluco and L-ido stereochemistries for the tetrol pattern as well as R and S configurations for the C-2 carbon bearing the C-alkyl chain is reported. We observed that C-alkylation of the L-ido tetrahydroxylated azepane converts it from an α-L-fucosidase to a ß-glucosidase and ß-galactosidase inhibitor while N-alkylation of the D-gluco iminosugar significantly improves its inhibition profile leading to potent ß-glucosidase, ß-galactosidase, α-L-rhamnosidase and ß-glucuronidase inhibitors whatever the stereochemistry of the alkyl chain. Interestingly, the N-alkyl chain length usually parallels the azepane inhibitor potency as exemplified by the identification of a potent glucocerebrosidase inhibitor (Ki 1 µM) bearing a twelve carbon atom chain. Additionally, several C-alkyl azepanes demonstrated promising F508del-CFTR correction unlike the parent tetrahydroxyazepanes. None of the C-alkyl and N-alkyl azepanes did inhibit ER α-glucosidases I or II.


Subject(s)
Cystic Fibrosis Transmembrane Conductance Regulator/antagonists & inhibitors , Enzyme Inhibitors/pharmacology , Glucosylceramidase/antagonists & inhibitors , Imino Sugars/pharmacology , Alkylation , Crystallography, X-Ray , Cystic Fibrosis Transmembrane Conductance Regulator/genetics , Cystic Fibrosis Transmembrane Conductance Regulator/metabolism , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/chemistry , Glucosylceramidase/metabolism , Humans , Imino Sugars/chemical synthesis , Imino Sugars/chemistry , Models, Molecular , Molecular Conformation , Structure-Activity Relationship
2.
Bioorg Med Chem ; 21(16): 4831-8, 2013 Aug 15.
Article in English | MEDLINE | ID: mdl-23582447

ABSTRACT

Deoxynojirimycin (DNJ) based imino sugars display antiviral activity in the tissue culture surrogate model of Hepatitis C (HCV), bovine viral diarrhoea virus (BVDV), mediated by inhibition of ER α-glucosidases. Here, the antiviral activities of neoglycoconjugates derived from deoxynojirimycin, and a novel compound derived from deoxygalactonojirimycin, by click chemistry with functionalised adamantanes are presented. Their antiviral potency, in terms of both viral infectivity and virion secretion, with respect to their effect on α-glucosidase inhibition, are reported. The distinct correlation between the ability of long alkyl chain derivatives to inhibit ER α-glucosidases and their anti-viral effect is demonstrated. Increasing alkyl linker length between DNJ and triazole groups increases α-glucosidase inhibition and reduces the production of viral progeny RNA and the maturation of the envelope polypeptide. Disruption to viral glycoprotein processing, with increased glucosylation on BVDV E2 species, is representative of α-glucosidase inhibition, whilst derivatives with longer alkyl linkers also show a further decrease in infectivity of secreted virions, an effect proposed to be distinct from α-glucosidase inhibition.


Subject(s)
Antiviral Agents/chemistry , Enzyme Inhibitors/chemistry , Glycoside Hydrolase Inhibitors , Imino Sugars/chemistry , 1-Deoxynojirimycin/chemistry , Animals , Antiviral Agents/chemical synthesis , Antiviral Agents/pharmacology , Cattle , Cell Survival/drug effects , Click Chemistry , Diarrhea Viruses, Bovine Viral/metabolism , Dogs , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/pharmacology , Glucosamine/analogs & derivatives , Glucosamine/chemistry , Glycosylation , Hepacivirus/metabolism , Imino Sugars/chemical synthesis , Imino Sugars/pharmacology , Madin Darby Canine Kidney Cells , Viral Envelope Proteins/metabolism , Virus Replication/drug effects , alpha-Glucosidases/metabolism
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