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Host Cell Redox Alterations Promote Latent HIV-1 Reactivation through Atypical Transcription Factor Cooperativity.

Publication ,  Journal Article
Cruz-Lorenzo, E; Ramirez, N-GP; Lee, J; Pandhe, S; Wang, L; Hernandez-Doria, J; Spivak, AM; Planelles, V; Petersen, T; Jain, MK; Martinez, ED ...
Published in: Viruses
October 2022

Immune cell state alterations rewire HIV-1 gene expression, thereby influencing viral latency and reactivation, but the mechanisms are still unfolding. Here, using a screen approach on CD4+ T cell models of HIV-1 latency, we revealed Small Molecule Reactivators (SMOREs) with unique chemistries altering the CD4+ T cell state and consequently promoting latent HIV-1 transcription and reactivation through an unprecedented mechanism of action. SMOREs triggered rapid oxidative stress and activated a redox-responsive program composed of cell-signaling kinases (MEK-ERK axis) and atypical transcription factor (AP-1 and HIF-1α) cooperativity. SMOREs induced an unusual AP-1 phosphorylation signature to promote AP-1/HIF-1α binding to the latent HIV-1 proviral genome for its activation. Consistently, latent HIV-1 reactivation was compromised with pharmacologic inhibition of oxidative stress sensing or of cell-signaling kinases, and transcription factor's loss of expression, thus functionally linking the host redox-responsive program to viral transcriptional rewiring. Notably, SMOREs induced the redox program in primary CD4+ T cells and reactivated latent HIV-1 in aviremic patient samples alone and in combination with known latency-reversing agents, thus providing physiological relevance. Our findings suggest that manipulation of redox-sensitive pathways could be exploited to alter the course of HIV-1 latency, thus rendering host cells responsive to help achieve a sterilizing cure.

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Published In

Viruses

DOI

EISSN

1999-4915

ISSN

1999-4915

Publication Date

October 2022

Volume

14

Issue

10

Start / End Page

2288

Related Subject Headings

  • Virus Latency
  • Virus Activation
  • Transcription Factor AP-1
  • Oxidation-Reduction
  • Mitogen-Activated Protein Kinase Kinases
  • Jurkat Cells
  • Humans
  • HIV-1
  • HIV Seropositivity
  • HIV Infections
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Cruz-Lorenzo, E., Ramirez, N.-G., Lee, J., Pandhe, S., Wang, L., Hernandez-Doria, J., … D’Orso, I. (2022). Host Cell Redox Alterations Promote Latent HIV-1 Reactivation through Atypical Transcription Factor Cooperativity. Viruses, 14(10), 2288. https://doi.org/10.3390/v14102288
Cruz-Lorenzo, Emily, Nora-Guadalupe P. Ramirez, Jeon Lee, Sonali Pandhe, Lei Wang, Juan Hernandez-Doria, Adam M. Spivak, et al. “Host Cell Redox Alterations Promote Latent HIV-1 Reactivation through Atypical Transcription Factor Cooperativity.Viruses 14, no. 10 (October 2022): 2288. https://doi.org/10.3390/v14102288.
Cruz-Lorenzo E, Ramirez N-GP, Lee J, Pandhe S, Wang L, Hernandez-Doria J, et al. Host Cell Redox Alterations Promote Latent HIV-1 Reactivation through Atypical Transcription Factor Cooperativity. Viruses. 2022 Oct;14(10):2288.
Cruz-Lorenzo, Emily, et al. “Host Cell Redox Alterations Promote Latent HIV-1 Reactivation through Atypical Transcription Factor Cooperativity.Viruses, vol. 14, no. 10, Oct. 2022, p. 2288. Epmc, doi:10.3390/v14102288.
Cruz-Lorenzo E, Ramirez N-GP, Lee J, Pandhe S, Wang L, Hernandez-Doria J, Spivak AM, Planelles V, Petersen T, Jain MK, Martinez ED, D’Orso I. Host Cell Redox Alterations Promote Latent HIV-1 Reactivation through Atypical Transcription Factor Cooperativity. Viruses. 2022 Oct;14(10):2288.

Published In

Viruses

DOI

EISSN

1999-4915

ISSN

1999-4915

Publication Date

October 2022

Volume

14

Issue

10

Start / End Page

2288

Related Subject Headings

  • Virus Latency
  • Virus Activation
  • Transcription Factor AP-1
  • Oxidation-Reduction
  • Mitogen-Activated Protein Kinase Kinases
  • Jurkat Cells
  • Humans
  • HIV-1
  • HIV Seropositivity
  • HIV Infections