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Deciphering the Molecular Mechanism of HCV Protease Inhibitor Fluorination as a General Approach to Avoid Drug Resistance

J Mol Biol. 2022-02; 
Jacqueto Zephyr, Desaboini Nageswara Rao, Sang V Vo, Mina Henes, Klajdi Kosovrasti, Ashley N Matthew, Adam K Hedger, Jennifer Timm, Elise T Chan, Akbar Ali, Nese Kurt Yilmaz, Celia A Schiffer
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Custom Vector Construction … The HCV GT-1a NS3/4A protease gene described in the Bristol Myers Squibb patent was synthesized by GenScript and cloned into a PET28a expression vector. Cys159 was mutated … Get A Quote

摘要

Third generation Hepatitis C virus (HCV) NS3/4A protease inhibitors (PIs), glecaprevir and voxilaprevir, are highly effective across genotypes and against many resistant variants. Unlike earlier PIs, these compounds have fluorine substitutions on the P2-P4 macrocycle and P1 moieties. Fluorination has long been used in medicinal chemistry as a strategy to improve physicochemical properties and potency. However, the molecular basis by which fluorination improves potency and resistance profile of HCV NS3/4A PIs is not well understood. To systematically analyze the contribution of fluorine substitutions to inhibitor potency and resistance profile, we used a multi-disciplinary approach involving inhibitor design and... More

关键词

X-ray crystallography, medicinal chemistry, protease inhibitors, structural biology, structure-based drug design