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Updated: Apr 12, 2026

High Throughput In Vitro Assessment of Latency Reversing Agents on HIV Transcription and Splicing
Published on: January 22, 2019
Apoptosis-induced activation of HIV-1 in latently infected cell lines
Sohrab Z Khan1, Nicholas Hand2, Steven L Zeichner3,4,5
1Center for Cancer and Immunology Research, Children's Research Institute, Children's National Medical Center, Washington, DC, USA. sokhan@childrensnational.org.
Background:
Despite much work, safe and effective approaches to attack and deplete the long-lived reservoir of cells latently infected with HIV-1 remain an elusive goal. Patients infected with HIV-1 treated with cytotoxic agents or bone marrow transplantation can experience decreases in the reservoir of HIV-1 latently infected cells. Other viruses capable of long-term latency, such as herpesviruses, can sense host cell apoptosis and respond by initiating replication. These observations suggest that other viruses capable of long-term latency, like HIV-1, might also sense when its host cell is about to undergo apoptosis and respond by initiating replication.
Results:
Pro-monocytic (U1) and lymphoid (ACH-2) HIV-1 persistently infected cell lines were treated with cytotoxic drugs - doxorubicin, etoposide, fludarabine phosphate, or vincristine - and activation of latent HIV-1 was evaluated using assays for HIV-1 RNA and p24 production. Both cell lines showed dose-dependent increases in apoptosis and associated HIV-1 activation following exposure to the cytotoxic agents. Pretreatment of the cells with the pan-caspase inhibitor Z-VAD-FMK prior to exposure to the cytotoxic agents inhibited apoptosis and viral activation. Direct exposure of the latently infected cell lines to activated caspases also induced viral replication. HIV-1 virions produced in association with host cell apoptosis were infectious.
Conclusions:
The results indicate that latent HIV-1 can sense when its host cell is undergoing apoptosis and responds by completing its replication cycle. The results may help explain why patients treated with cytotoxic regimens for bone marrow transplantation showed reductions in the reservoir of latently infected cells. The results also suggest that the mechanisms that HIV-1 uses to sense and respond to host cell apoptosis signals may represent helpful new targets for approaches to attack and deplete the long-lived reservoir of cells latently infected with HIV-1.
Insights
Latent HIV-1 activates replication when host cells undergo apoptosis. Inhibiting this response could target the HIV-1 reservoir, offering new therapeutic strategies for HIV infection.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- The latent reservoir of HIV-1 (Human Immunodeficiency Virus type 1) remains a significant barrier to curing HIV infection.
- Existing treatments like cytotoxic agents and bone marrow transplantation can reduce this reservoir.
- Other latent viruses, like herpesviruses, reactivate upon sensing host cell apoptosis.
Purpose of the Study:
- To investigate if latent HIV-1 can sense and respond to host cell apoptosis.
- To explore the potential of targeting this sensing mechanism for HIV-1 reservoir depletion.
Main Methods:
- Used HIV-1 persistently infected cell lines (U1 and ACH-2).
- Treated cells with cytotoxic drugs (doxorubicin, etoposide, fludarabine phosphate, vincristine).
- Assessed HIV-1 RNA and p24 production to measure viral activation.
- Utilized a pan-caspase inhibitor (Z-VAD-FMK) to block apoptosis and viral activation.
Main Results:
- Cytotoxic drugs induced dose-dependent apoptosis and HIV-1 activation in infected cells.
- Inhibiting caspases blocked both apoptosis and viral reactivation.
- Direct exposure to activated caspases triggered HIV-1 replication.
- HIV-1 virions produced during apoptosis were infectious.
Conclusions:
- Latent HIV-1 actively senses and responds to host cell apoptosis by initiating replication.
- This mechanism may explain reservoir reduction observed in bone marrow transplant patients.
- Targeting HIV-1's apoptosis sensing pathways offers a novel therapeutic strategy against the latent reservoir.
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