Infectious Virion Capture by HIV-1 gp120-Specific IgG from RV144 Vaccinees

Author:

Liu Pinghuang123,Yates Nicole L.13,Shen Xiaoying13,Bonsignori Mattia13,Moody M. Anthony14,Liao Hua-Xin13,Fong Youyi5,Alam S. Munir13,Overman R. Glenn13,Denny Thomas13,Ferrari Guido2,Ochsenbauer Christina6,Kappes John C.6,Polonis Victoria R.7,Pitisuttithum Punnee8,Kaewkungwal Jaranit9,Nitayaphan Sorachai10,Rerks-Ngarm Supachai11,Montefiori David C.12,Gilbert Peter5,Michael Nelson L.7,Kim Jerome H.7,Haynes Barton F.1312,Tomaras Georgia D.121213

Affiliation:

1. Duke Human Vaccine Institute, Duke University, Durham, North Carolina, USA

2. Departments of Surgery, Duke University, Durham, North Carolina, USA

3. Medicine, Duke University, Durham, North Carolina, USA

4. Pediatrics, Duke University, Durham, North Carolina, USA

5. SCHARP, Vaccine and Infectious Division, Fred Hutchinson Cancer Research Center, Seattle, Washington, USA

6. University of Alabama at Birmingham, Department of Medicine, and UAB CFAR, Birmingham, Alabama, USA

7. U.S. Military HIV Research Program, Walter Reed Army Institute of Research, Rockville, Maryland, USA

8. Mahidol University, Bangkok, Thailand

9. Center of Excellence for Biomedical and Public Health Informatics, BIOPHICS, Faculty of Tropical Medicine, Bangkok, Thailand

10. Department of Retrovirology, U.S. Army Medical Component, AFRIMS, Bangkok, Thailand

11. Department of Disease Control, Ministry of Public Health, Nonthaburi, Thailand

12. Immunology, Duke University, Durham, North Carolina, USA

13. Molecular Genetics and Microbiology, Duke University, Durham, North Carolina, USA

Abstract

ABSTRACT The detailed examination of the antibody repertoire from RV144 provides a unique template for understanding potentially protective antibody functions. Some potential immune correlates of protection were untested in the correlates analyses due to inherent assay limitations, as well as the need to keep the correlates analysis focused on a limited number of endpoints to achieve statistical power. In an RV144 pilot study, we determined that RV144 vaccination elicited antibodies that could bind infectious virions (including the vaccine strains HIV-1 CM244 and HIV-1 MN and an HIV-1 strain expressing transmitted/founder Env, B.WITO.c). Among vaccinees with the highest IgG binding antibody profile, the majority (78%) captured the infectious vaccine strain virus (CM244), while a smaller proportion of vaccinees (26%) captured HIV-1 transmitted/founder Env virus. We demonstrated that vaccine-elicited HIV-1 gp120 antibodies of multiple specificities (V3, V2, conformational C1, and gp120 conformational) mediated capture of infectious virions. Although capture of infectious HIV-1 correlated with other humoral immune responses, the extent of variation between these humoral responses and virion capture indicates that virion capture antibodies occupy unique immunological space.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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