CD8 + Lymphocytes from Simian Immunodeficiency Virus-Infected Rhesus Macaques Recognize 14 Different Epitopes Bound by the Major Histocompatibility Complex Class I Molecule Mamu-A*01: Implications for Vaccine Design and Testing

Author:

Allen Todd M.1,Mothé Bianca R.12,Sidney John3,Jing Peicheng1,Dzuris John L.3,Liebl Max E.1,Vogel Thorsten U.1,O'Connor David H.1,Wang Xiaochi4,Wussow Michael C.1,Thomson James A.1,Altman John D.4,Watkins David I.12,Sette Alessandro3

Affiliation:

1. Wisconsin Regional Primate Research Center, University of Wisconsin, Madison, Wisconsin 537151;

2. Department of Pathology and Laboratory Medicine, University of Wisconsin, Madison, Wisconsin 53706-15322

3. Epimmune, San Diego, California 921213;

4. Emory Vaccine Center, Emory University School of Medicine, Atlanta, Georgia4; and

Abstract

ABSTRACT It is becoming increasingly clear that any human immunodeficiency virus (HIV) vaccine should induce a strong CD8 + response. Additional desirable elements are multispecificity and a focus on conserved epitopes. The use of multiple conserved epitopes arranged in an artificial gene (or EpiGene) is a potential means to achieve these goals. To test this concept in a relevant disease model we sought to identify multiple simian immunodeficiency virus (SIV)-derived CD8 + epitopes bound by a single nonhuman primate major histocompatibility complex (MHC) class I molecule. We had previously identified the peptide binding motif of Mamu-A*01 2 , a common rhesus macaque MHC class I molecule that presents the immunodominant SIV gag -derived cytotoxic T lymphocyte (CTL) epitope Gag_CM9 (CTPYDINQM). Herein, we scanned SIV proteins for the presence of Mamu-A*01 motifs. The binding capacity of 221 motif-positive peptides was determined using purified Mamu-A*01 molecules. Thirty-seven peptides bound with apparent K d values of 500 nM or lower, with 21 peptides binding better than the Gag_CM9 peptide. Peripheral blood mononuclear cells from SIV-infected Mamu-A*01 + macaques recognized 14 of these peptides in ELISPOT, CTL, or tetramer analyses. This study reveals an unprecedented complexity and diversity of anti-SIV CTL responses. Furthermore, it represents an important step toward the design of a multiepitope vaccine for SIV and HIV.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference78 articles.

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4. Allen T. M. Watkins D. I. SIV and SHIV CTL epitopes identified in macaques p. IV 8–13 (http://hiv-web.lanl.gov/immunology/).HIV molecular immunology database 1998. Korber B. 1998 Los Alamos National Laboratory Los Alamos N. Mex

5. Phenotypic Analysis of Antigen-Specific T Lymphocytes

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