Related Experiment Video
Updated: Dec 14, 2025

Preparation of Cell-lines for Conditional Knockdown of Gene Expression and Measurement of the Knockdown Effects on E4orf4-Induced Cell Death
Published on: October 21, 2012
Enhanced oncolytic activity of E4orf6-deficient adenovirus by facilitating nuclear export of HuR
Ishraque Ahmed1, Mohammad Towfik Alam2, Aya Yanagawa-Matsuda3
1Department of Molecular Oncology, Hokkaido University Faculty of Dental Medicine and Graduate School of Biomedical Science and Engineering, Sapporo, Japan.
Abstract:
An AU-rich element (ARE) is RNA element that enhances the rapid decay of mRNA. The RNA binding protein HuR stabilizes ARE-mRNA by exporting it to the cytoplasm. In most of cancer cells, HuR is exported to the cytoplasm and ARE-mRNA is stabilized. In addition, the viral gene product E4orf6 exports HuR to stabilize ARE-mRNA in adenovirus-infected cells and the stabilization is required for full virus replication. Previously we showed the oncolytic activity of E4orf6-deleted adenovirus dl355, which can replicate in cancer cells where ARE-mRNA is stabilized. In this study, we examined whether the further enhancement of HuR export can stimulate the replication and the oncolytic activity of dl355. We found that ethanol treatment promoted the cytoplasmic relocalization of HuR in cancer cells. In addition, the replication efficiency of dl355 increased in ethanol-treated cells, and in response, the cytolytic activity of the virus also increased in vitro and in vivo. Upregulation of a cleaved-PARP level in infected cells mediated by ethanol is suggesting that ethanol activated the apoptosis induced by dl355. IVa2 mRNA, the only ARE-mRNA among transcripts of adenovirus was augmented by ethanol treatment. These data indicate that the enhancement of ARE-mRNA stabilization as a result of ethanol treatment upregulates the oncolytic activity of dl355 and suggests that the combined use of an oncolytic adenovirus and ethanol treatment may be a good strategy for cancer therapy.
Insights
Ethanol enhances the cancer-killing ability of an oncolytic adenovirus by promoting the export of RNA-binding protein HuR. This stabilizes AU-rich element (ARE)-mRNAs, boosting virus replication and cytolytic activity for improved cancer therapy.
Area of Science:
- Molecular Biology
- Virology
- Cancer Research
Background:
- AU-rich elements (AREs) destabilize mRNA, but HuR binding stabilizes it.
- Cancer cells often show cytoplasmic HuR, stabilizing ARE-mRNAs.
- Adenovirus E4orf6 protein also exports HuR, stabilizing ARE-mRNAs for viral replication.
Purpose of the Study:
- To investigate if enhancing HuR export boosts oncolytic adenovirus dl355 replication and activity.
- To explore ethanol's effect on HuR export and its impact on dl355 efficacy.
Main Methods:
- Treatment of cancer cells with ethanol.
- Assessment of HuR cytoplasmic relocalization.
- Measurement of dl355 replication efficiency.
- Evaluation of viral cytolytic activity in vitro and in vivo.
- Analysis of cleaved-PARP and IVa2 mRNA levels.
Main Results:
- Ethanol treatment promoted HuR export to the cytoplasm.
- dl355 replication and cytolytic activity increased in ethanol-treated cells.
- Ethanol upregulated cleaved-PARP, indicating enhanced apoptosis.
- Adenovirus IVa2 mRNA levels were augmented by ethanol.
Conclusions:
- Enhanced ARE-mRNA stabilization via ethanol treatment boosts oncolytic adenovirus activity.
- Combined use of oncolytic adenovirus and ethanol is a promising cancer therapy strategy.
Related Concept Videos
Nuclear Export of mRNA
Nuclear Export of mRNA
Nuclear Export
NES are of three types- the canonical 10-residue long leucine-rich signal and other...
Mechanisms of Retrovirus-induced Cancers

