PTEN Mediates the Silencing of Unintegrated HIV-1 DNA.
An Thanh PhanYiping ZhuPublished in: Viruses (2024)
The integration of viral DNA into a host genome is an important step in HIV-1 replication. However, due to the high failure rate of integration, the majority of viral DNA exists in an unintegrated state during HIV-1 infection. In contrast to the robust expression from integrated viral DNA, unintegrated HIV-1 DNA is very poorly transcribed in infected cells, but the molecular machinery responsible for the silencing of unintegrated HIV-1 DNA remains poorly characterized. In this study, we sought to characterize new host factors for the inhibition of expression from unintegrated HIV-1 DNA. A genome-wide CRISPR-Cas9 knockout screening revealed the essential role of phosphatase and tensin homolog (PTEN) in the silencing of unintegrated HIV-1 DNA. PTEN's phosphatase activity negatively regulates the PI3K-Akt pathway to inhibit the transcription from unintegrated HIV-1 DNA. The knockout (KO) of PTEN or inhibition of PTEN's phosphatase activity by point mutagenesis activates Akt by phosphorylation and enhances the transcription from unintegrated HIV-1 DNA. Inhibition of the PI3K-Akt pathway by Akt inhibitor in PTEN-KO cells restores the silencing of unintegrated HIV-1 DNA. Transcriptional factors (NF-κB, Sp1, and AP-1) are important for the activation of unintegrated HIV-1 DNA in PTEN-KO cells. Finally, the knockout of PTEN increases the levels of active epigenetic marks (H3ac and H3K4me3) and the recruitment of PolII on unintegrated HIV-1 DNA chromatin. Our experiments reveal that PTEN targets transcription factors (NF-κB, Sp1, and AP-1) by negatively regulating the PI3K-Akt pathway to promote the silencing of unintegrated HIV-1 DNA.
Keyphrases
- antiretroviral therapy
- circulating tumor
- hiv positive
- hiv testing
- hiv infected
- human immunodeficiency virus
- cell free
- single molecule
- hepatitis c virus
- hiv aids
- men who have sex with men
- cell proliferation
- pi k akt
- transcription factor
- crispr cas
- genome wide
- signaling pathway
- induced apoptosis
- nucleic acid
- sars cov
- gene expression
- computed tomography
- dna methylation
- cell cycle arrest
- dna damage
- oxidative stress
- magnetic resonance
- lps induced
- immune response
- inflammatory response
- heat stress