Potent and Broad Neutralization of HIV-1 Subtype C by Plasma Antibodies Targeting a Quaternary Epitope Including Residues in the V2 Loop

Author:

Moore Penny L.12,Gray Elin S.1,Sheward Daniel3,Madiga Maphuti1,Ranchobe Nthabeleng1,Lai Zhong4,Honnen William J.4,Nonyane Molati1,Tumba Nancy1,Hermanus Tandile1,Sibeko Sengeziwe5,Mlisana Koleka56,Abdool Karim Salim S.5,Williamson Carolyn3,Pinter Abraham4,Morris Lynn12

Affiliation:

1. AIDS Virus Research Unit, National Institute for Communicable Diseases of the National Health Laboratory Services, Johannesburg, South Africa

2. University of the Witwatersrand, Johannesburg, South Africa

3. Institute of Infectious Disease and Molecular Medicine, University of Cape Town, Cape Town, South Africa

4. Public Health Research Institute Center, UMDNJ—New Jersey Medical School, Newark, New Jersey

5. Centre for the AIDS Programme of Research in South Africa (CAPRISA), University of KwaZulu Natal, Durban, South Africa

6. Lancet Laboratories, Johannesburg, South Africa

Abstract

ABSTRACT The targets of broadly cross-neutralizing (BCN) antibodies are of great interest in the HIV vaccine field. We have identified a subtype C HIV-1-superinfected individual, CAP256, with high-level BCN activity, and characterized the antibody specificity mediating breadth. CAP256 developed potent BCN activity peaking at 3 years postinfection, neutralizing 32 (76%) of 42 heterologous viruses, with titers of antibodies against some viruses exceeding 1:10,000. CAP256 showed a subtype bias, preferentially neutralizing subtype C and A viruses over subtype B viruses. CAP256 BCN serum targeted a quaternary epitope which included the V1V2 region. Further mapping identified residues F159, N160, L165, R166, D167, K169, and K171 (forming the FN/LRD-K-K motif) in the V2 region as crucial to the CAP256 epitope. However, the fine specificity of the BCN response varied over time and, while consistently dependent on R166 and K169, became gradually less dependent on D167 and K171, possibly contributing to the incremental increase in breadth over 4 years. The presence of an intact FN/LRD-K-K motif in heterologous viruses was associated with sensitivity, although the length of the adjacent V1 loop modulated the degree of sensitivity, with a shorter V1 region significantly associated with higher titers. Repair of the FN/LRD-K-K motif in resistant heterologous viruses conferred sensitivity, with titers sometimes exceeding 1:10,000. Comparison of the CAP256 epitope with that of the PG9/PG16 monoclonal antibodies suggested that these epitopes overlapped, adding to the mounting evidence that this may represent a common neutralization target that should be further investigated as a potential vaccine candidate.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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