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Updated: Nov 9, 2025

High Throughput In Vitro Assessment of Latency Reversing Agents on HIV Transcription and Splicing
Published on: January 22, 2019
Screening for gene expression fluctuations reveals latency-promoting agents of HIV
Yiyang Lu1, Kathrin Bohn-Wippert1, Patrick J Pazerunas2
1Department of Bioengineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801.
Abstract:
Upon treatment removal, spontaneous reactivation of latently infected T cells remains a major barrier toward curing HIV. Therapies that reactivate and clear the latent reservoir are only partially effective, while latency-promoting agents (LPAs) used to suppress reactivation and stabilize latency are understudied and lack diversity in their mechanisms of action. Here, we identify additional LPAs using a screen for gene-expression fluctuations (or "noise") that drive cell-fate specification and control HIV reactivation from latency. Single-cell protein dynamics of a minimal HIV gene circuit were monitored with time-lapse fluorescence microscopy. We screened 1,806 drugs, out of which 279 modulate noise magnitude or half autocorrelation time. Next, we tested the strongest noise modulators in a Jurkat T cell latency model and discovered three LPAs that would be overlooked by quantifying their mean expression levels alone. The LPAs reduced reactivation of latency in both Jurkat and primary cell models when challenged by synergistic and potent combinations of HIV activators. The two strongest LPAs, NSC 401005 and NSC 400938, are structurally and functionally related to inhibitors of thioredoxin reductase, a protein involved in maintaining redox balance in host cells. Experiments with multiple functional analogs revealed two additional LPAs, PX12 and tiopronin, and suggest a potential LPA family, within which some are commercially available and Food and Drug Administration-approved. The LPAs presented here may provide new strategies to complement antiretroviral treatments. Screening for gene expression noise holds the potential for drug discovery in other diseases.
Insights
Researchers discovered new latency-promoting agents (LPAs) by screening for gene expression noise, which could help stabilize HIV latency and complement current treatments.
Area of Science:
- Virology
- Molecular Biology
- Drug Discovery
Background:
- HIV latency in T cells is a major obstacle to a cure.
- Existing therapies to reactivate and clear the latent reservoir are limited.
- Latency-promoting agents (LPAs) are understudied and lack diverse mechanisms.
Purpose of the Study:
- To identify novel LPAs using a gene expression noise screening approach.
- To investigate the role of gene expression noise in controlling HIV reactivation.
- To discover new therapeutic strategies for managing HIV latency.
Main Methods:
- Screened 1,806 drugs for modulation of gene expression noise in an HIV gene circuit.
- Utilized time-lapse fluorescence microscopy to monitor single-cell protein dynamics.
- Tested identified noise modulators in Jurkat T cell and primary cell latency models.
Main Results:
- Identified 279 drugs that modulate gene expression noise; three novel LPAs were discovered.
- These LPAs suppressed HIV reactivation in both Jurkat and primary cells.
- Two potent LPAs, NSC 401005 and NSC 400938, are thioredoxin reductase inhibitors.
- Identified PX12 and tiopronin as additional LPAs, suggesting a new drug class.
Conclusions:
- Screening for gene expression noise is a viable strategy for discovering novel LPAs.
- Identified LPAs, including thioredoxin reductase inhibitors, offer new avenues to stabilize HIV latency.
- These findings may lead to complementary therapies for HIV treatment and drug discovery in other diseases.

