Cell heterogeneity contributes to the variable response of HIV-1 to latency-reversing agents

Transcriptional noise contributes to gene expression variability, but its origin and impact in HIV-1 latency remain incompletely characterized. Here, we combine a dual-copy MS2-tagging system with dedicated mathematical analysis to investigate the variability of HIV-1 transcription in live cells. In the basal state, the transcriptional activity of proviruses located in the same cell was uncorrelated, indicating that expression variability primarily comes from the intrinsic stochasticity of promoter dynamics. Upon stimulation with diverse latency-reversing agents, transcription of viral copies became more correlated within cells than across them, revealing a shift from promoter-driven to cell state–driven variability. Analysis of the molecular drug targets confirmed variable effects across cells. Our findings indicate that cellular heterogeneity can shape the response to latency-reversing agents and demonstrate how quantitative tools can dissect noise sources. This work offers mechanistic insights into HIV-1 latency and informs strategies to target the latent viral reservoir.

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Publication Details

Journal
Science Advances
Published
2026-10-09
DOI
https://doi.org/10.1126/sciadv.aeb1435
Primary Topic
HIV Research and Treatment
Type
article
Field-Weighted Citation Impact
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article

Cell heterogeneity contributes to the variable response of HIV-1 to latency-reversing agents

Édouard Bertrand, Flavia Mazzarda, Kazem Zibara, Manon Philippe et al.
Science Advances
HIV Research and Treatment
article

Cell heterogeneity contributes to the variable response of HIV-1 to latency-reversing agents

Édouard Bertrand, Flavia Mazzarda, Kazem Zibara, Manon Philippe, Ovidiu Radulescu, Oriane Pourcelot, Hussein Karaki, Rachel Topno
article en

Abstract

Transcriptional noise contributes to gene expression variability, but its origin and impact in HIV-1 latency remain incompletely characterized. Here, we combine a dual-copy MS2-tagging system with dedicated mathematical analysis to investigate the variability of HIV-1 transcription in live cells. In the basal state, the transcriptional activity of proviruses located in the same cell was uncorrelated, indicating that expression variability primarily comes from the intrinsic stochasticity of promoter dynamics. Upon stimulation with diverse latency-reversing agents, transcription of viral copies became more correlated within cells than across them, revealing a shift from promoter-driven to cell state–driven variability. Analysis of the molecular drug targets confirmed variable effects across cells. Our findings indicate that cellular heterogeneity can shape the response to latency-reversing agents and demonstrate how quantitative tools can dissect noise sources. This work offers mechanistic insights into HIV-1 latency and informs strategies to target the latent viral reservoir.

Science AdvancesVol. 12(41)
Centre National de la Recherche Scientifique (FR), Inserm (FR), Lebanese University (LB), Université de Montpellier (FR)
Openalex Percentile: Top 15%
HIV Research and Treatment
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Cell heterogeneity contributes to the variable response of HIV-1 to latency-reversing agents — Édouard Bertrand, Flavia Mazzarda, et al. · Science Advances (2026) | TGRS Research Map | TGRS