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Published on: May 30, 2013
Expression of CD25 defines peripheral blood mononuclear cells with productive versus latent HIV infection
1Department of Microbiology, University of Texas Southwestern Medical Center, Dallas 75235, USA.
Insights
The CD25 marker helps differentiate between actively producing and latent HIV cells. Targeting CD25+ cells with immunotoxin significantly reduced viral production and altered proviral DNA species.
Area of Science:
- Immunology
- Virology
- Molecular Biology
Background:
- The CD25 marker's role in distinguishing HIV infection states remains unclear.
- Understanding HIV latency is crucial for developing effective treatments.
Purpose of the Study:
- To investigate if the CD25 marker can differentiate between productively and latently HIV-infected cells.
- To assess the impact of targeting CD25+ cells on HIV production and proviral DNA.
Main Methods:
- Utilized immunotoxin (IT)-mediated killing of CD25+ cells.
- Employed highly sensitive indirect immunofluorescence for CD25+ cell detection.
- Applied PCR to analyze proviral DNA in treated and untreated HIV-infected cells.
Main Results:
- Indirect immunofluorescence detected significantly more CD25+ cells (30%) compared to direct methods (3-8%).
- Anti-CD25 IT treatment reduced p24 production by 99% and eliminated CD25high/low cells.
- Distinct proviral DNA species were found in CD25+ depleted cells versus unfractionated cells.
Conclusions:
- CD25 expression effectively distinguishes latently infected cells from actively producing HIV cells.
- Targeting CD25+ cells offers a potential strategy for controlling HIV replication.
- The study provides further evidence for CD25 as a marker for HIV cellular reservoirs.
Abstract:
The present studies were designed to further determine whether the CD25 marker could distinguish between cells productively and latently infected with HIV. This was accomplished by combining immunotoxin (IT)-mediated killing of CD25+ cells, highly sensitive indirect immunofluorescence to detect remaining CD25+ cells, and PCR-mediated amplification of proviral DNA in immunotoxin-treated vs untreated HIV-infected cells. Our results demonstrate that: 1) By direct immunofluorescence 3 to 8% of PBMCs are CD25+, whereas by indirect immunofluorescence 30% are CD25+. The increased number of CD25+ cells is due to their detection by the highly sensitive indirect immunofluorescence assay. Up to 60% of the CD25+ cells are CD4+ and 12% are CD8+. 2) Treatment of HIV-infected PBMCs with an anti-CD25 IT for 6 days eliminated both CD25high and CD25low cells and decreased the production of p24 by 99%. 3) Differences in the HIV proviral genome were detected in the unfractionated PBMCs vs PBMCs from which CD25+ cells had been eliminated by IT treatment. Hence, PBMCs containing both CD25+ and CD25- cells express all intermediate proviral species and full-length double-stranded proviral DNA. In contrast, CD25- quiescent cells contain predominantly intermediate species. These results confirm and extend our previous observations that expression of CD25 can distinguish latently infected cells from cells producing virus.
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