SARS CoV-2 mRNA vaccination exposes latent HIV to Nef-specific CD8+ T-cells

Author:

Stevenson Eva M.,Terry SandraORCID,Copertino DennisORCID,Leyre Louise,Danesh Ali,Weiler Jared,Ward Adam R.ORCID,Khadka Pragya,McNeil Evan,Bernard Kevin,Miller Itzayana G.,Ellsworth Grant B.,Johnston Carrie D.,Finkelsztein Eli J.,Zumbo Paul,Betel DoronORCID,Dündar FriederikeORCID,Duncan Maggie C.,Lapointe Hope R.ORCID,Speckmaier Sarah,Moran-Garcia Nadia,Papa Michelle Premazzi,Nicholes Samuel,Stover Carissa J.ORCID,Lynch Rebecca M.ORCID,Caskey MarinaORCID,Gaebler ChristianORCID,Chun Tae-Wook,Bosque Alberto,Wilkin Timothy J.,Lee Guinevere Q.ORCID,Brumme Zabrina L.ORCID,Jones R. BradORCID

Abstract

AbstractEfforts to cure HIV have focused on reactivating latent proviruses to enable elimination by CD8+ cytotoxic T-cells. Clinical studies of latency reversing agents (LRA) in antiretroviral therapy (ART)-treated individuals have shown increases in HIV transcription, but without reductions in virologic measures, or evidence that HIV-specific CD8+ T-cells were productively engaged. Here, we show that the SARS-CoV-2 mRNA vaccine BNT162b2 activates the RIG-I/TLR – TNF – NFκb axis, resulting in transcription of HIV proviruses with minimal perturbations of T-cell activation and host transcription. T-cells specific for the early gene-product HIV-Nef uniquely increased in frequency and acquired effector function (granzyme-B) in ART-treated individuals following SARS-CoV-2 mRNA vaccination. These parameters of CD8+ T-cell induction correlated with significant decreases in cell-associated HIV mRNA, suggesting killing or suppression of cells transcribing HIV. Thus, we report the observation of an intervention-induced reduction in a measure of HIV persistence, accompanied by precise immune correlates, in ART-suppressed individuals. However, we did not observe significant depletions of intact proviruses, underscoring challenges to achieving (or measuring) HIV reservoir reductions. Overall, our results support prioritizing the measurement of granzyme-B-producing Nef-specific responses in latency reversal studies and add impetus to developing HIV-targeted mRNA therapeutic vaccines that leverage built-in LRA activity.

Funder

U.S. Department of Health & Human Services | NIH | National Institute of Allergy and Infectious Diseases

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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