Efficacious Early Antiviral Activity of HIV Gag- and Pol-Specific HLA-B*2705-Restricted CD8 + T Cells

Author:

Payne Rebecca P.1,Kløverpris Henrik1,Sacha Jonah B.2,Brumme Zabrina34,Brumme Chanson4,Buus Søren5,Sims Stuart6,Hickling Stephen67,Riddell Lynn8,Chen Fabian9,Luzzi Graz10,Edwards Anne11,Phillips Rodney6,Prado Julia G.1,Goulder Philip J. R.11213

Affiliation:

1. Department of Paediatrics, University of Oxford, Peter Medawar Building for Pathogen Research, Oxford OX1 3SY, United Kingdom

2. Department of Pathology and Laboratory Medicine, University of Wisconsin—Madison, Madison, Wisconsin 53711

3. Faculty of Health Sciences, Simon Fraser University

4. British Columbia Centre for Excellence in HIV/AIDS, Vancouver, BC, Canada

5. Laboratory of Experimental Immunology, University of Copenhagen, Copenhagen, Denmark

6. Nuffield Department of Medicine, University of Oxford, Peter Medawar Building for Pathogen Research, Oxford OX1 3SY, United Kingdom

7. Department of Zoology, James Martin 21st Century School, South Parks Road, Oxford OX1 3SY, United Kingdom

8. Northampton Healthcare NHS Foundation Trust, Cliftonville, Northampton NN1 5BD, United Kingdom

9. Royal Berkshire NHS Foundation Trust, London Road, Reading RG1 5AN, United Kingdom

10. Wycombe Hospital, Queen Alexandra Road, High Wycombe, Bucks HP11 2TT, United Kingdom

11. Churchill Hospital, Old Road, Headington, Oxford OX3 7LJ, United Kingdom

12. Partners AIDS Research Center, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts

13. HIV Pathogenesis Programme, the Doris Duke Medical Research Institute, University of KwaZulu-Natal, Durban, South Africa

Abstract

ABSTRACT The association between HLA-B*2705 and the immune control of human immunodeficiency virus type 1 (HIV-1) has previously been linked to the targeting of the HLA-B*2705-restricted Gag epitope KRWIILGLNK (KK10) by CD8 + T cells. In order to better define the mechanisms of the HLA-B*2705 immune control of HIV, we first characterized the CD8 + T-cell responses of nine highly active antiretroviral therapy (HAART)-naïve B*2705-positive subjects. Unexpectedly, we observed a strong response to an HLA-B*2705-restricted Pol epitope, KRKGGIGGY (KY9), in 8/9 subjects. The magnitude of the KY9 response was only marginally lower than that of the KK10-specific response (median, 695 versus 867 spot-forming cells [SFC]/million peripheral blood mononuclear cells [PBMCs]; not significant [NS]), and viral escape mutants were observed in both KY9 and KK10, resulting from selection pressure driven by the respective CD8 + T-cell response. By comparing inhibitions of viral replication by CD8 + T cells specific for the Gag KK10, Pol KY9, and Vpr VL9 HLA-B*2705-restricted epitopes, we observed a consistent hierarchy of antiviral efficacy (Gag KK10 > Pol KY9 > Vpr VL9). This hierarchy was associated with early recognition of HIV-1-infected cells, within 6 h of infection, by KK10- and KY9-specific CD8 + T cells but not until 18 h postinfection by VL9-specific CD8 + T cells. There was no association between antiviral efficacy and proliferative capacity, cytotoxicity, polyfunctionality, or T-cell receptor (TCR) avidity. These data are consistent with previous studies indicating an important role for the B*2705-Gag KK10 response in the control of HIV but also suggest a previously unrecognized role played by the subdominant Pol-specific KY9 response in HLA-B*2705-mediated control of HIV and that the recognition of HIV-infected cells by CD8 + T cells early in the viral life cycle may be important for viral containment in HIV-infected individuals.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference37 articles.

1. Almeida, J. R., D. A. Price, L. Papagno, Z. A. Arkoub, D. Sauce, E. Bornstein, T. E. Asher, A. Samri, A. Schnuriger, I. Theodorou, D. Costagliola, C. Rouzioux, H. Agut, A. G. Marcelin, D. Douek, B. Autran, and V. Appay. 2007. Superior control of HIV-1 replication by CD8+ T cells is reflected by their avidity, polyfunctionality, and clonal turnover. J. Exp. Med.204:2473-2485.

2. Almeida, J. R., D. Sauce, D. A. Price, L. Papagno, S. Y. Shin, A. Moris, M. Larsen, G. Pancino, D. C. Douek, B. Autran, A. Saez-Cirion, and V. Appay. 2009. Antigen sensitivity is a major determinant of CD8+ T-cell polyfunctionality and HIV-suppressive activity. Blood113:6351-6360.

3. Identification of Dominant Optimal HLA-B60- and HLA-B61-Restricted Cytotoxic T-Lymphocyte (CTL) Epitopes: Rapid Characterization of CTL Responses by Enzyme-Linked Immunospot Assay

4. Appay, V., P. R. Dunbar, M. Callan, P. Klenerman, G. M. Gillespie, L. Papagno, G. S. Ogg, A. King, F. Lechner, C. A. Spina, S. Little, D. V. Havlir, D. D. Richman, N. Gruener, G. Pape, A. Waters, P. Easterbrook, M. Salio, V. Cerundolo, A. J. McMichael, and S. L. Rowland-Jones. 2002. Memory CD8+ T cells vary in differentiation phenotype in different persistent virus infections. Nat. Med.8:379-385.

5. Betts, M. R., B. Exley, D. A. Price, A. Bansal, Z. T. Camacho, V. Teaberry, S. M. West, D. R. Ambrozak, G. Tomaras, M. Roederer, J. M. Kilby, J. Tartaglia, R. Belshe, F. Gao, D. C. Douek, K. J. Weinhold, R. A. Koup, P. Goepfert, and G. Ferrari. 2005. Characterization of functional and phenotypic changes in anti-Gag vaccine-induced T cell responses and their role in protection after HIV-1 infection. Proc. Natl. Acad. Sci. U. S. A.102:4512-4517.

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