Indoline CD4-mimetic compounds mediate potent and broad HIV-1 inhibition and sensitization to antibody-dependent cellular cytotoxicity

Author:

Fritschi Christopher J.1,Anang Saumya23,Gong Zhen4ORCID,Mohammadi Mohammadjavad5ORCID,Richard Jonathan67,Bourassa Catherine7,Severino Kenny T.8,Richter Hannah8,Yang Derek1,Chen Hung-Ching1,Chiu Ta-Jung1,Seaman Michael S.8ORCID,Madani Navid23,Abrams Cameron5,Finzi Andrés67,Hendrickson Wayne A.49ORCID,Sodroski Joseph G.2310,Smith Amos B.1

Affiliation:

1. Department of Chemistry, University of Pennsylvania, Philadelphia, PA 19104

2. Department of Cancer Immunology and Virology, Dana-Farber Cancer Institute, Harvard Medical School, Boston, MA 02115

3. Department of Microbiology, Harvard Medical School, Boston, MA 02115

4. Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY 10032

5. Department of Chemical and Biological Engineering, Drexel University, Philadelphia, PA 19104

6. Centre de Recherche du CHUM, Montreal, QC H2X 0A9, Canada

7. Departement de Microbiologie, Infectiologie et Immunologie, Universite de Montreal, Montreal, QC H3T 1J4, Canada

8. Center for Virology and Vaccine Research, Beth Israel Deaconess Medical Center, Boston, MA 02215

9. Department of Physiology and Cellular Biophysics, Columbia University, New York, NY 10032

10. Department of Immunology and Infectious Diseases, Harvard School of Public Health, Boston, MA 02115

Abstract

Binding to the host cell receptors, CD4 and CCR5/CXCR4, triggers large-scale conformational changes in the HIV-1 envelope glycoprotein (Env) trimer [(gp120/gp41) 3 ] that promote virus entry into the cell. CD4-mimetic compounds (CD4mcs) comprise small organic molecules that bind in the highly conserved CD4-binding site of gp120 and prematurely induce inactivating Env conformational changes, including shedding of gp120 from the Env trimer. By inducing more “open,” antibody-susceptible Env conformations, CD4mcs also sensitize HIV-1 virions to neutralization by antibodies and infected cells to antibody-dependent cellular cytotoxicity (ADCC). Here, we report the design, synthesis, and evaluation of novel CD4mcs based on an indoline scaffold. Compared with our current lead indane scaffold CD4mc, BNM-III-170, several indoline CD4mcs exhibit increased potency and breadth against HIV-1 variants from different geographic clades. Viruses that were selected for resistance to the lead indane CD4mc, BNM-III-170, are susceptible to inhibition by the indoline CD4mcs. The indoline CD4mcs also potently sensitize HIV-1-infected cells to ADCC mediated by plasma from HIV-1-infected individuals. Crystal structures indicate that the indoline CD4mcs gain potency compared to the indane CD4mcs through more favorable π–π overlap from the indoline pose and by making favorable contacts with the vestibule of the CD4-binding pocket on gp120. The rational design of indoline CD4mcs thus holds promise for further improvements in antiviral activity, potentially contributing to efforts to treat and prevent HIV-1 infection.

Funder

HHS | NIH | National Institute of Allergy and Infectious Diseases

Canada Research Chairs

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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