Related Experiment Video
Updated: Dec 26, 2025

Identification of Nucleolar Factors During HIV-1 Replication Through Rev Immunoprecipitation and Mass Spectrometry
Published on: June 26, 2019
The HIV-1 capsid-binding host factor CPSF6 is post-transcriptionally regulated by the cellular microRNA miR-125b
Evan Chaudhuri1,2, Sabyasachi Dash1,2,3,4, Muthukumar Balasubramaniam1,2
1Center for AIDS Health Disparities Research, Meharry Medical College, Nashville, Tennessee 37208.
Abstract:
Cleavage and polyadenylation specificity factor 6 (CPSF6) is a cellular protein involved in mRNA processing. Emerging evidence suggests that CPSF6 also plays key roles in HIV-1 infection, specifically during nuclear import and integration targeting. However, the cellular and molecular mechanisms that regulate CPSF6 expression are largely unknown. In this study, we report a post-transcriptional mechanism that regulates CPSF6 via the cellular microRNA miR-125b. An in silico analysis revealed that the 3'UTR of CPSF6 contains a miR-125b-binding site that is conserved across several mammalian species. Because miRNAs repress protein expression, we tested the effects of miR-125b expression on CPSF6 levels in miR-125b knockdown and over-expression experiments, revealing that miR-125b and CPSF6 levels are inversely correlated. To determine whether miR-125b post-transcriptionally regulates CPSF6, we introduced the 3'UTR of CPSF6 mRNA into a luciferase reporter and found that miR-125b negatively regulates CPSF6 3'UTR-driven luciferase activity. Accordingly, mutations in the miR-125b seed sequence abrogated the regulatory effect of the miRNA on the CPSF6 3'UTR. Finally, pulldown experiments demonstrated that miR-125b physically interacts with CPSF6 3'UTR. Interestingly, HIV-1 infection down-regulated miR-125b expression concurrent with up-regulation of CPSF6. Notably, miR-125b down-regulation in infected cells was not due to reduced pri-miRNA or pre-miRNA levels. However, miR-125b down-regulation depended on HIV-1 reverse transcription but not viral DNA integration. These findings establish a post-transcriptional mechanism that controls CPSF6 expression and highlight a novel function of miR-125b during HIV-host interaction.
Insights
MicroRNA miR-125b post-transcriptionally regulates Cleavage and polyadenylation specificity factor 6 (CPSF6) expression. HIV-1 infection reduces miR-125b, increasing CPSF6 levels, impacting viral-host interactions.
Area of Science:
- Molecular Biology
- Virology
- Gene Regulation
Background:
- Cleavage and polyadenylation specificity factor 6 (CPSF6) is crucial for mRNA processing and implicated in HIV-1 infection.
- Mechanisms regulating CPSF6 expression, particularly in the context of viral infection, remain largely unelucidated.
Purpose of the Study:
- To investigate the post-transcriptional regulation of CPSF6 expression.
- To determine the role of microRNA miR-125b in controlling CPSF6 levels.
- To explore the impact of HIV-1 infection on the miR-125b/CPSF6 axis.
Main Methods:
- Bioinformatic analysis to identify potential miRNA binding sites in CPSF6 3'UTR.
- Luciferase reporter assays to assess miR-125b-mediated regulation of CPSF6 3'UTR.
- miRNA knockdown and overexpression experiments to evaluate the inverse correlation between miR-125b and CPSF6.
- Pulldown assays to confirm physical interaction between miR-125b and CPSF6 3'UTR.
- Analysis of miR-125b and CPSF6 levels in HIV-1 infected cells.
Main Results:
- A conserved miR-125b binding site was identified in the CPSF6 3'UTR.
- miR-125b was found to negatively regulate CPSF6 expression at the post-transcriptional level.
- miR-125b and CPSF6 levels exhibited an inverse correlation.
- HIV-1 infection led to decreased miR-125b and increased CPSF6 expression.
- Downregulation of miR-125b during HIV-1 infection was dependent on reverse transcription but not integration.
Conclusions:
- A novel post-transcriptional regulatory mechanism for CPSF6 involving miR-125b has been established.
- miR-125b plays a significant role in modulating CPSF6 expression during HIV-1 infection.
- This study reveals a new facet of HIV-host interaction mediated by the miR-125b/CPSF6 pathway.
More Related Videos
13:47Lentiviral Vector Platform for the Efficient Delivery of Epigenome-editing Tools into Human Induced Pluripotent Stem Cell-derived Disease Models
Published on: March 29, 2019
07:23Describing a Transcription Factor Dependent Regulation of the MicroRNA Transcriptome
Published on: June 15, 2016
Related Concept Videos
Regulation of Nuclear Protein Sorting
MicroRNAs
MicroRNAs