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Published on: October 21, 2012
The Adenovirus E4orf4 Protein Provides a Novel Mechanism for Inhibition of the DNA Damage Response
Anna Brestovitsky1, Keren Nebenzahl-Sharon1, Peter Kechker1
1Department of Microbiology, the Rappaport Faculty of Medicine and Research Institute, Technion-Israel Institute of Technology, Haifa, Israel.
Abstract:
The DNA damage response (DDR) is a conglomerate of pathways designed to detect DNA damage and signal its presence to cell cycle checkpoints and to the repair machinery, allowing the cell to pause and mend the damage, or if the damage is too severe, to trigger apoptosis or senescence. Various DDR branches are regulated by kinases of the phosphatidylinositol 3-kinase-like protein kinase family, including ataxia-telangiectasia mutated (ATM) and ATM- and Rad3-related (ATR). Replication intermediates and linear double-stranded genomes of DNA viruses are perceived by the cell as DNA damage and activate the DDR. If allowed to operate, the DDR will stimulate ligation of viral genomes and will inhibit virus replication. To prevent this outcome, many DNA viruses evolved ways to limit the DDR. As part of its attack on the DDR, adenovirus utilizes various viral proteins to cause degradation of DDR proteins and to sequester the MRN damage sensor outside virus replication centers. Here we show that adenovirus evolved yet another novel mechanism to inhibit the DDR. The E4orf4 protein, together with its cellular partner PP2A, reduces phosphorylation of ATM and ATR substrates in virus-infected cells and in cells treated with DNA damaging drugs, and causes accumulation of damaged DNA in the drug-treated cells. ATM and ATR are not mutually required for inhibition of their signaling pathways by E4orf4. ATM and ATR deficiency as well as E4orf4 expression enhance infection efficiency. Furthermore, E4orf4, previously reported to induce cancer-specific cell death when expressed alone, sensitizes cells to killing by sub-lethal concentrations of DNA damaging drugs, likely because it inhibits DNA damage repair. These findings provide one explanation for the cancer-specificity of E4orf4-induced cell death as many cancers have DDR deficiencies leading to increased reliance on the remaining intact DDR pathways and to enhanced susceptibility to DDR inhibitors such as E4orf4. Thus DDR inhibition by E4orf4 contributes both to the efficiency of adenovirus replication and to the ability of E4orf4 to kill cancer cells.
Insights
Adenovirus E4orf4 protein inhibits the DNA damage response (DDR) by reducing ATM and ATR signaling, aiding viral replication. This inhibition also sensitizes cancer cells to DNA damaging drugs, explaining E4orf4
Area of Science:
- Molecular Biology
- Virology
- Cell Biology
Background:
- The DNA damage response (DDR) is crucial for detecting and repairing DNA damage, involving kinases like ATM and ATR.
- DNA viruses can activate the DDR, which normally inhibits viral replication.
- Viruses have evolved mechanisms to evade or suppress the DDR to ensure their survival and replication.
Purpose of the Study:
- To investigate novel mechanisms by which adenovirus inhibits the DDR.
- To elucidate the role of adenovirus E4orf4 protein in modulating DDR signaling.
- To understand the implications of E4orf4-mediated DDR inhibition for viral replication and cancer cell death.
Main Methods:
- Investigated the effect of adenovirus E4orf4 on ATM and ATR substrates phosphorylation.
- Assessed the impact of E4orf4 on DNA damage accumulation in drug-treated cells.
- Examined the role of ATM and ATR in E4orf4-mediated DDR inhibition and viral infection efficiency.
Main Results:
- Adenovirus E4orf4 protein, with PP2A, reduces ATM and ATR substrate phosphorylation in infected and drug-treated cells.
- E4orf4 expression leads to increased accumulation of damaged DNA and enhances adenovirus infection efficiency.
- ATM and ATR are not mutually required for E4orf4's inhibition of their signaling pathways.
Conclusions:
- Adenovirus E4orf4 employs a novel mechanism to inhibit the DDR by targeting ATM and ATR signaling.
- DDR inhibition by E4orf4 contributes to efficient adenovirus replication.
- E4orf4 sensitizes cancer cells with DDR deficiencies to DNA damaging drugs, explaining its cancer-specific cell death induction.
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