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Updated: Aug 1, 2025

In Vitro Assay to Evaluate the Impact of Immunoregulatory Pathways on HIV-specific CD4 T Cell Effector Function
Published on: October 15, 2013
HIV Infection Elicits Differential Transcriptomic Remodeling in CD4+ T Cells with Variable Proliferative Responses to
Xinlian Zhang1, Savitha Deshmukh2, Amey Mukim2
1Department of Family Medicine and Public Health, University of California San Diego, La Jolla, CA 92093, USA.
Insights
Identifying cellular biomarkers for latent HIV infection is crucial for reservoir detection and elimination. Early gene expression changes after HIV infection, dependent on T cell receptor signaling and cell division, may indicate future latency biomarkers.
Area of Science:
- Immunology
- Virology
- Genomics
Background:
- Latent HIV infection establishes a reservoir, hindering viral eradication.
- Current latency biomarkers identify only a portion of the HIV reservoir.
- HIV latency can arise in both dividing and resting cells.
Purpose of the Study:
- To investigate transcriptomic changes during early HIV infection in cells with varying proliferative responses.
- To understand how T cell receptor (TCR) signaling influences HIV latency establishment.
- To identify potential cellular biomarkers for latent HIV infection based on early cellular states.
Main Methods:
- Monitoring cell proliferation using carboxyfluorescein diacetate succinimidyl ester (CFSE).
- Performing single-cell RNA sequencing on cells with different division histories post-HIV infection.
- Analyzing transcriptomic remodeling induced by HIV infection and TCR stimulation.
Main Results:
- HIV infection induced transcriptional changes, some independent of cell division number.
- Distinct transcriptional responses were observed in different cell subsets.
- Early gene expression changes correlated with known markers of latently infected cells.
Conclusions:
- The cellular proliferative state at the time of HIV infection influences early gene expression.
- These early transcriptional changes may serve as predictive biomarkers for HIV latency.
- Understanding these early events is key to developing strategies for latent HIV reservoir targeting.
Abstract:
Identification of a cellular biomarker of latent HIV infection will facilitate the latent reservoir detection, quantification, and targeting for elimination. Unfortunately, the latency biomarkers reported in the literature define only a fraction of the entire reservoir. The latent HIV reservoir may be established in dividing cells that subsequently return to quiescence and in resting cells. The strength of the T cell receptor (TCR) signaling at the time of infection affects characteristics of the established reservoir, such as the ability to reactivate with latency reversing agents. To better understand the cellular environments before latency establishment, we characterized transcriptomic remodeling induced by the initial HIV infection in cells with differential proliferative responses to the TCR stimulus. Cell proliferation was monitored using the viable dye carboxyfluorescein diacetate succinimidyl ester. Cells that divided many times, a few times, or remained non-dividing were subjected to single-cell RNA sequencing. A subset of identified transcriptional changes induced by HIV infection was independent of the number of cell divisions; however, responses unique to different cell subsets were also detected. Some of these early gene expression changes were consistent with reported markers of latently infected cells. We pose that the latency biomarkers may depend on the cellular proliferative state at the time of infection.
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