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MicroRNA-155 Reinforces HIV Latency*
- Ruelas, Debbie S;
- Chan, Jonathan K;
- Oh, Eugene;
- Heidersbach, Amy J;
- Hebbeler, Andrew M;
- Chavez, Leonard;
- Verdin, Eric;
- Rape, Michael;
- Greene, Warner C
Published Web Location
https://doi.org/10.1074/jbc.m115.641837Abstract
The presence of a small number of infected but transcriptionally dormant cells currently thwarts a cure for the more than 35 million individuals infected with HIV. Reactivation of these latently infected cells may result in three fates: 1) cell death due to a viral cytopathic effect, 2) cell death due to immune clearance, or 3) a retreat into latency. Uncovering the dynamics of HIV gene expression and silencing in the latent reservoir will be crucial for developing an HIV-1 cure. Here we identify and characterize an intracellular circuit involving TRIM32, an HIV activator, and miR-155, a microRNA that may promote a return to latency in these transiently activated reservoir cells. Notably, we demonstrate that TRIM32, an E3 ubiquitin ligase, promotes reactivation from latency by directly modifying IκBα, leading to a novel mechanism of NF-κB induction not involving IκB kinase activation.
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