HLA-B57/B*5801 Human Immunodeficiency Virus Type 1 Elite Controllers Select for Rare Gag Variants Associated with Reduced Viral Replication Capacity and Strong Cytotoxic T-Lymphotye Recognition

Author:

Miura Toshiyuki123,Brockman Mark A.13,Schneidewind Arne13,Lobritz Michael4,Pereyra Florencia13,Rathod Almas1,Block Brian L.1,Brumme Zabrina L.13,Brumme Chanson J.1,Baker Brett1,Rothchild Alissa C.1,Li Bin13,Trocha Alicja12,Cutrell Emily1,Frahm Nicole13,Brander Christian13,Toth Ildiko1,Arts Eric J.4,Allen Todd M.13,Walker Bruce D.123

Affiliation:

1. Ragon Institute (formerly Partners AIDS Research Center), Massachusetts General Hospital, Charlestown, Massachusetts 02129

2. Howard Hughes Medical Institute, Chevy Chase, Maryland

3. Harvard Medical School, Boston, Massachusetts

4. Case Western Reserve University, Cleveland, Ohio

Abstract

ABSTRACT Human immunodeficiency virus type 1 (HIV-1) elite controllers (EC) maintain viremia below the limit of commercial assay detection (<50 RNA copies/ml) in the absence of antiviral therapy, but the mechanisms of control remain unclear. HLA-B57 and the closely related allele B*5801 are particularly associated with enhanced control and recognize the same Gag 240-249 TW10 epitope. The typical escape mutation (T242N) within this epitope diminishes viral replication capacity in chronically infected persons; however, little is known about TW10 epitope sequences in residual replicating viruses in B57/B*5801 EC and the extent to which mutations within this epitope may influence steady-state viremia. Here we analyzed TW10 in a total of 50 B57/B*5801-positive subjects (23 EC and 27 viremic subjects). Autologous plasma viral sequences from both EC and viremic subjects frequently harbored the typical cytotoxic T-lymphocyte (CTL)-selected mutation T242N (15/23 sequences [65.2%] versus 23/27 sequences [85.1%], respectively; P = 0.18). However, other unique mutants were identified in HIV controllers, both within and flanking TW10, that were associated with an even greater reduction in viral replication capacity in vitro. In addition, strong CTL responses to many of these unique TW10 variants were detected by gamma interferon-specific enzyme-linked immunospot assay. These data suggest a dual mechanism for durable control of HIV replication, consisting of viral fitness loss resulting from CTL escape mutations together with strong CD8 T-cell immune responses to the arising variant epitopes.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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