Initial HIV-1 Antigen-Specific CD8 + T Cells in Acute HIV-1 Infection Inhibit Transmitted/Founder Virus Replication

Author:

Freel Stephanie A.12,Picking Ralph A.2,Ferrari Guido2,Ding Haitao3,Ochsenbauer Christina3,Kappes John C.3,Kirchherr Jennifer L.14,Soderberg Kelly A.14,Weinhold Kent J.125,Cunningham Coleen K.46,Denny Thomas N.14,Crump John A.47,Cohen Myron S.8,McMichael Andrew J.9,Haynes Barton F.145,Tomaras Georgia D.12510

Affiliation:

1. Duke University Human Vaccine Institute, Durham, North Carolina, USA

2. Departments of Surgery, Durham, North Carolina, USA

3. University of Alabama at Birmingham, School of Medicine, Department of Hematology & Oncology, Birmingham, Alabama, USA

4. Medicine, Durham, North Carolina, USA

5. Immunology, Durham, North Carolina, USA

6. Pediatrics, Durham, North Carolina, USA

7. Kilimanjaro Christian Medical Centre, Moshi, Tanzania

8. Institute for Global Health and Infectious Diseases, University of North Carolina at Chapel Hill, Department of Microbiology and Immunology, Chapel Hill, North Carolina, USA

9. University of Oxford, Oxford, United Kingdom

10. Molecular Genetics and Microbiology, Durham, North Carolina, USA

Abstract

ABSTRACT CD8-mediated virus inhibition can be detected in HIV-1-positive subjects who naturally control virus replication. Characterizing the inhibitory function of CD8 + T cells during acute HIV-1 infection (AHI) can elucidate the nature of the CD8 + responses that can be rapidly elicited and that contribute to virus control. We examined the timing and HIV-1 antigen specificity of antiviral CD8 + T cells during AHI. Autologous and heterologous CD8 + T cell antiviral functions were assessed longitudinally during AHI in five donors from the CHAVI 001 cohort using a CD8 + T cell-mediated virus inhibition assay (CD8 VIA) and transmitted/founder (T/F) viruses. Potent CD8 + antiviral responses against heterologous T/F viruses appeared during AHI at the first time point sampled in each of the 5 donors (Fiebig stages 1/2 to 5). Inhibition of an autologous T/F virus was durable to 48 weeks; however, inhibition of heterologous responses declined concurrent with the resolution of viremia. HIV-1 viruses from 6 months postinfection were more resistant to CD8 + -mediated virus inhibition than cognate T/F viruses, demonstrating that the virus escapes early from CD8 + T cell-mediated inhibition of virus replication. CD8 + T cell antigen-specific subsets mediated inhibition of T/F virus replication via soluble components, and these soluble responses were stimulated by peptide pools that include epitopes that were shown to drive HIV-1 escape during AHI. These data provide insights into the mechanisms of CD8-mediated virus inhibition and suggest that functional analyses will be important for determining whether similar antigen-specific virus inhibition can be induced by T cell-directed vaccine strategies.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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