Cross-Clade Neutralizing Activity of Human Anti-V3 Monoclonal Antibodies Derived from the Cells of Individuals Infected with Non-B Clades of Human Immunodeficiency Virus Type 1

Author:

Gorny Miroslaw K.1,Williams Constance1,Volsky Barbara1,Revesz Kathy2,Wang Xiao-Hong2,Burda Sherri1,Kimura Tetsuya1,Konings Frank A. J.3,Nádas Arthur4,Anyangwe Christopher A.5,Nyambi Phillipe12,Krachmarov Chavdar6,Pinter Abraham6,Zolla-Pazner Susan12

Affiliation:

1. Departments of Pathology

2. Research Enhancement Award Program, Veterans Affairs New York Harbor Healthcare System, New York, New York 10010

3. Microbiology

4. Institute of Environmental Medicine, New York University School of Medicine, New York, New York 10016

5. Alpha Royal Clinic, Bamenda, Cameroon

6. Public Health Research Institute, Newark, New Jersey 07103

Abstract

ABSTRACT The majority of global human immunodeficiency virus infections are caused by viruses characterized by a GPGQ motif at the tip of the V3 loop. Characterization of anti-V3 monoclonal antibodies (MAbs) that neutralize isolates with the GPGQ V3 motif is an important step in designing vaccines that will induce such Abs. Consequently, seven human anti-V3 MAbs derived from the cells of individuals infected with non-B-subtype viruses (anti-V3 non-B MAbs) were generated from the cells of individuals from Africa infected with circulating recombinant forms CRF02_AG, CRF09_cpx, and CRF13_cpx, each of which contains a subtype A env gene. Sequence analysis of plasma viruses revealed a GPGQ motif at the apex of the V3 loop from six of the seven subjects and a GPGR motif from one subject. The MAbs were selected with fusion proteins (FP) containing V3 92UG037.8 or V3 JR-CSF from subtype A or B, respectively. In virus binding assays, five of the seven (71%) anti-V3 non-B MAbs bound to V3-FPs from both subtype A and subtype B, while only four of the nine (44%) anti-V3 B MAbs recognized both V3-FPs. Using two neutralization assays, both the anti-V3 non-B and the anti-V3 B MAbs neutralized subtype B viruses with similar activities, while the anti-V3 non-B MAbs exhibited a tendency toward both increased potency and breadth of neutralization against non-B viruses compared to anti-V3 B MAbs. Statistical significance was not achieved, due in large measure to the sizes of the MAb panels, but the overall pattern of data strongly suggests that viruses with the GPGQ motif at the tip of the V3 loop induce anti-V3 Abs with broader cross-neutralizing activity than do viruses with the GPGR motif.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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