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High Throughput In Vitro Assessment of Latency Reversing Agents on HIV Transcription and Splicing
Published on: January 22, 2019
In vitro effects of the small-molecule protein kinase C agonists on HIV latency reactivation
Jessica Brogdon1, Widade Ziani1, Xiaolei Wang1
1Tulane National Primate Research Center, Tulane University School of Medicine, Covington, LA 70433, USA.
Abstract:
The persistence of latently HIV-infected cellular reservoirs represents the major obstacle to virus eradication in patients under antiretroviral therapy (ART). Cure strategies to eliminate these reservoirs are thus needed to reactivate proviral gene expression in latently infected cells. In this study, we tested optimal concentrations of PKC agonist candidates (PEP005/Ingenol-3-angelate, prostratin, bryostatin-1, and JQ1) to reactivate HIV latency in vitro, and examined their effects on cell survival, activation and epigenetic histone methylation after treatment alone or in combination in cell line and isolated CD4 T cells from SIV-infected macaques. The results showed that PKC agonists increased cell activation with different degrees of latency reactivation, concomitant with reduced levels of histone methylation. With increasing concentrations, prostratin and byrostain-1 treatment rapidly reduced cell survival and cell activation. The PKC agonist combinations, or in combination with JQ1, led to modest levels of synergistic reactivation of HIV. Remarkably, PEP005 treatment alone caused marked reactivation of HIV latency, similar to PMA stimulation. These findings suggested that PEP005 alone, as indicated its lower cytotoxicity and lower effective dose inducing maximal reactivation, might be a candidate for effectively reactivating HIV latency as part of a therapeutic strategy for HIV infection.
Insights
Researchers explored compounds to reactivate latent HIV infection, a major barrier to eradication. PEP005 showed promising potential for HIV latency reactivation with low toxicity, offering a new therapeutic avenue.
Area of Science:
- Immunology
- Virology
- Molecular Biology
Background:
- Latent HIV reservoirs persist despite antiretroviral therapy (ART), hindering virus eradication.
- Reactivating proviral gene expression is crucial for developing effective HIV cure strategies.
Purpose of the Study:
- To evaluate PKC agonist candidates for their ability to reactivate HIV latency in vitro.
- To assess the effects of these candidates on cell survival, activation, and epigenetic histone methylation.
Main Methods:
- Tested optimal concentrations of PEP005, prostratin, bryostatin-1, and JQ1.
- Evaluated treatments alone and in combination on cell lines and primary CD4 T cells from SIV-infected macaques.
- Assessed cell survival, activation, and histone methylation levels.
Main Results:
- PKC agonists increased cell activation and HIV latency reactivation, reducing histone methylation.
- Prostratin and bryostatin-1 showed reduced cell survival and activation at higher concentrations.
- PEP005 alone demonstrated significant HIV latency reactivation with lower cytotoxicity compared to other agents.
Conclusions:
- PEP005 is a potential candidate for HIV latency reactivation strategies due to its efficacy and low toxicity.
- Combination therapies with PKC agonists and JQ1 showed synergistic, albeit modest, HIV reactivation.
- Targeting epigenetic modifications like histone methylation is a viable approach in HIV cure research.
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