Design of N‑Benzoxaborole Benzofuran GSK8175Optimization of Human Pharmacokinetics Inspired by Metabolites of a Failed Clinical HCV Inhibitor
收藏Figshare2019-03-07 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Design_of_i_N_i_Benzoxaborole_Benzofuran_GSK8175_Optimization_of_Human_Pharmacokinetics_Inspired_by_Metabolites_of_a_Failed_Clinical_HCV_Inhibitor/7813724
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We previously described the discovery of GSK5852 (1), a non-nucleoside polymerase (NS5B) inhibitor of hepatitis C virus (HCV), in which an N-benzyl boronic acid was essential for potent antiviral activity. Unfortunately, facile benzylic oxidation resulted in a short plasma half-life (5 h) in human volunteers, and a backup program was initiated to remove metabolic liabilities associated with 1. Herein, we describe second-generation NS5B inhibitors including GSK8175 (49), a sulfonamide-N-benzoxaborole analog with low in vivo clearance across preclinical species and broad-spectrum activity against HCV replicons. An X-ray structure of NS5B protein cocrystallized with 49 revealed unique protein-inhibitor interactions mediated by an extensive network of ordered water molecules and the first evidence of boronate complex formation within the binding pocket. In clinical studies, 49 displayed a 60–63 h half-life and a robust decrease in viral RNA levels in HCV-infected patients, thereby validating our hypothesis that reducing benzylic oxidation would improve human pharmacokinetics and lower efficacious doses relative to 1.
创建时间:
2019-03-07



