CpG methylation and methionine metabolism account for phenotypic bifurcation of HIV transcription: a unique case of a pure epigenetic phenomenon
Gautam, N.; Rai, A.; Dopierala, J.; Bryner, A.; Lusic, M.; CHEN, H.-C.
Show abstract
HIV transcription is characterized by its stochastic nature, which plays a pivotal role in determining the fate of a provirus--active replication or latent infection--and is therefore a critical determinant of the HIV latency establishment. Building upon our previous work, we identified a unique phenotype of stochastic HIV transcription in a Jurkat T cell clonal model harboring a single lentiviral-based vector, herein referred to as the HIV transcription-sensitized model. A defining feature of this cellular model is that the turnover of HIV transcription shows elevated frequency--a phenomenon designated phenotypic bifurcation--suggesting that, under certain conditions, the regulation of stochastic HIV transcription can be a pure epigenetic phenomenon. In continuation of and to further substantiate this premise, the present study characterizes the contributions of epigenetic regulation of CpG methylation, methionine metabolism that coordinates cell cycle events, and HIV antisense transcription to this phenomenon. This work adds direct causal evidence to the hypothesis that a potential lag prior to the entry of the G2 phase in the bifurcated state of low HIV transcription may serve as one of the underlying mechanisms that lead to the high CpG methylation level compared with that measured in the state of high HIV transcription, contributing to the cyclical turnover of phenotypic bifurcation of HIV transcription.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Extensive proteomic and transcriptomic changes quench the TCR/CD3 activation signal of latently HIV-1 infected T cells 93%
- Inhibition of the H3K27 demethylase UTX enhances the epigenetic silencing of HIV proviruses and induces HIV-1 DNA hypermethylation but fails to permanently block HIV reactivation 92%
- Biogenesis of P-TEFb in CD4+ T cells to reverse HIV latency is mediated by protein kinase C (PKC)-independent signaling pathways 92%
Similar papers in this journal
- Myc stimulates cell cycle progression through the activation of Cdk1 and phosphorylation of p27 90%
- A Quantitative Model of Cellular Decision Making in Direct Neuronal Reprogramming 90%
- Genetic variation regulates the activation and specificity of Restriction-Modification systems in Neisseria gonorrhoeae 90%
Similar papers in this journal
- Direct evidence of abortive lytic infection-mediated establishment of Epstein-Barr virus latency during B-cell infection 89%
- In depth characterization of an archaeal virus-host system reveals numerous virus exclusion mechanisms 89%
- Translation-associated mutational U-pressure in the first ORF of SARS-CoV-2 and other coronaviruses 89%
Similar papers in this journal
- Prolonged non-suppressible viremia sustained by a clonally expanded, genomically defective provirus with an immune-evasive HIV protein expression profile 91%
- Modulation of the functional interfaces between retroviral intasomes and the human nucleosome 90%
- Extensive epitranscriptomic methylation of A and C residues on murine leukemia virus transcripts enhances viral gene expression 90%
Similar papers in this journal
- TRIM5α restriction of HIV-1-N74D viruses in lymphocytes is caused by a loss of cyclophilin A protection 90%
- Divide et Impera: Identification of Small-Molecule Inhibitors of HCMV Replication Interfering with Dimerization of DNA Polymerase Processivity Factor UL44 90%
- Polymorphisms in human APOBEC3H differentially regulate ubiquitination and antiviral activity 90%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.