Fluorine Modifications Contribute to Potent Antiviral Activity against Highly Drug-Resistant HIV-1 and Favorable Blood-Brain Barrier Penetration Property of Novel Central Nervous System-Targeting HIV-1 Protease Inhibitors .

Masayuki Amano, Ravikiran S Yedidi, Pedro Miguel Salcedo-Gómez, Hironori Hayashi, Kazuya Hasegawa, Cuthbert D Martyr, Arun K Ghosh, Hiroaki Mitsuya

Journal: Antimicrobial agents and chemotherapy 2022;66(2):e0171521

PMID: 34978889

Abstract

To date, there are no specific treatment regimens for HIV-1-related central nervous system (CNS) complications, such as HIV-1-associated neurocognitive disorders (HAND). Here, we report that two newly generated CNS-targeting HIV-1 protease (PR) inhibitors (PIs), GRL-08513 and GRL-08613, which have a P1-3,5--fluorophenyl or P1--monofluorophenyl ring and P2-tetrahydropyrano-tetrahydrofuran (-THF) with a sulfonamide isostere, are potent against wild-type HIV-1 strains and multiple clinically isolated HIV-1 strains (50% effective concentration [EC]: 0.0001 to ∼0.0032 μM). As assessed with HIV-1 variants that had been selected to propagate at a 5 μM concentration of each HIV-1 PI (atazanavir, lopinavir, or amprenavir), GRL-08513 and GRL-08613 efficiently inhibited the replication of these highly PI-resistant variants (EC: 0.003 to ∼0.006 μM). GRL-08513 and GRL-08613 also maintained their antiviral activities against HIV-2 as well as severely multidrug-resistant clinical HIV-1 variants. Additionally, when we assessed with the blood-brain barrier (BBB) reconstruction system, GRL-08513 and GRL-08613 showed the most promising properties of CNS penetration among the evaluated compounds, including the majority of FDA-approved combination antiretroviral therapy (cART) drugs. In the crystallographic analysis of compound-PR complexes, it was demonstrated that the -THF rings at the P2 moiety of GRL-08513 and GRL-08613 form robust hydrogen bond interactions with the active site of HIV-1 PR. Furthermore, both the P1-3,5--fluorophenyl- and P1--monofluorophenyl rings sustain greater contact surfaces and form stronger van der Waals interactions with PR than is the case with darunavir-PR complex. Taken together, these results strongly suggest that GRL-08513 and GRL-08613 have favorable features for patients infected with wild-type/multidrug-resistant HIV-1 strains and might serve as candidates for a preventive and/or therapeutic agent for HAND and other CNS complications.

Address: Department of Hematology, Rheumatology, and Infectious Disease, Kumamoto University Hospitalgrid.411152.2, Kumamoto, Kumamoto, Japan.; Experimental Retrovirology Section, HIV and AIDS Malignancy Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, USA.; The Center for Advanced-Applied Biological Sciences & Entrepreneurship (TCABS-E), Visakhapatnam, Andhra Pradesh, India.; Department of Zoology, Andhra University, Visakhapatnam, Andhra Pradesh, India.; Division of Infectious Diseases, International Research Institute of Disaster Science, Tohoku University, Sendai, Japan.; Department of Intelligent Network for Infection Control, Tohoku University Graduate School of Medicine, Sendai, Japan.; Protein Crystal Analysis Division, Japan Synchrotron Radiation Research Institutegrid.410592.b, Kouto, Japan.; Department of Chemistry, Purdue University, West Lafayette, Indiana, USA.; Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University, West Lafayette, Indiana, USA.; National Center for Global Health and Medicine Research Institute, Tokyo, Japan.
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