Chemistry & Biology · 2011 · 47 citations · 47 references
Bioorganic ChemistryInflammatory Lung DiseaseLung InflammationChemical BiologyBisdionin FMedicinal ChemistrySelective Drug-like InhibitorBioanalysisPulmonary PharmacologyInhibitory ActivityAllergyBiochemistryBioconjugationMechanism Of ActionChitinase ActivityPharmacologyAnti-inflammatoryNatural SciencesAirway InflammationMedicineAcidic Mammalian ChitinaseDrug Discovery
Acidic mammalian chitinase (AMCase) is produced in the lung during allergic inflammation and asthma, and inhibition of enzymatic activity has been considered as a therapeutic strategy. However, most chitinase inhibitors are nonselective, additionally inhibiting chitotriosidase activity. Here, we describe bisdionin F, a competitive AMCase inhibitor with 20-fold selectivity for AMCase over chitotriosidase, designed by utilizing the AMCase crystal structure and dicaffeine scaffold. In a murine model of allergic inflammation, bisdionin F-treatment attenuated chitinase activity and alleviated the primary features of allergic inflammation including eosinophilia. However, selective AMCase inhibition by bisdionin F also caused dramatic and unexpected neutrophilia in the lungs. This class of inhibitor will be a powerful tool to dissect the functions of mammalian chitinases in disease and represents a synthetically accessible scaffold to optimize inhibitory properties in terms of airway inflammation.
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T. Alwyn Jones, Jin-yu Zou, Sandra W. Cowan et al. · Acta Crystallographica Section A Foundations of Crystallography · 1991 · 12.6K citations
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