Journal of Medicinal Chemistry · 2014 · 83 citations · 48 references
Tumor BiologyAldehyde DehydrogenaseDetailed KineticsBiochemistryFatty AcidsSelective Aldh3a1 InhibitionMedicineAldo-keto ReductaseMechanism Of ActionAnti-cancer AgentCancer CellsPharmacologyRadiation OncologyPharmaceutical ChemistryCancer ResearchDrug DiscoveryCancer Metabolism
Aldehyde dehydrogenase enzymes irreversibly oxidize aldehydes generated from metabolism of amino acids, fatty acids, food, smoke, additives, and xenobiotic drugs. Cyclophosphamide is one such xenobiotic used in cancer therapies. Upon activation, cyclophosphamide forms an intermediate, aldophosphamide, which can be detoxified to carboxyphosphamide by aldehyde dehydrogenases (ALDH), especially ALDH1A1 and ALDH3A1. Consequently, selective inhibition of ALDH3A1 could increase chemosensitivity toward cyclophosphamide in ALDH3A1 expressing tumors. Here, we report detailed kinetics and structural characterization of a highly selective submicromolar inhibitor of ALDH3A1, 1-[(4-fluorophenyl)sulfonyl]-2-methyl-1H-benzimidazole (CB7, IC50 of 0.2 μM). CB7 does not inhibit ALDH1A1, ALDH1A2, ALDH1A3, ALDH1B1, or ALDH2 activity. Structural, kinetics, and mutagenesis studies show that CB7 binds to the aldehyde binding pocket of ALDH3A1. ALDH3A1-expressing lung adenocarcinoma and glioblastoma cell lines are sensitized toward mafosfamide (MF) treatment in the presence analogues of CB7, whereas primary lung fibroblasts lacking ALDH3A1 expression, are not.
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<i>PHENIX</i>: a comprehensive Python-based system for macromolecular structure solution
Paul D. Adams, Pavel V. Afonine, G. Bunkóczi et al. · Acta Crystallographica Section D Biological Crystallography · 2010 · 24.1K citations · Full text
X-ray Crystallography, Structural Bioinformatics, Biomolecular Structure Prediction +14