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Adenovirus E4 open reading frame 4-induced apoptosis involves dysregulation of Src family kinases
J N Lavoie1, C Champagne, M C Gingras
1Centre de recherche en cancérologie de l'Université Laval, L'Hôtel-Dieu de Québec, Québec, G1R 2J6, Canada. lavoie@crhdq.ulaval.ca
Abstract:
The adenoviral early region 4 open reading frame 4 (E4orf4) death factor induces p53-independent apoptosis in many cell types and appears to kill selectively transformed cells. Here we show that expression of E4orf4 in transformed epithelial cells results in early caspase-independent membrane blebbing, associated with changes in the organization of focal adhesions and actin cytoskeleton. Evidence that E4orf4 can associate with and modulate Src family kinase activity, inhibiting Src-dependent phosphorylation of focal adhesion kinase (FAK) and paxillin while increasing phosphorylation of cortactin and some other cellular proteins, is presented. Furthermore, E4orf4 dramatically inhibited the ability of FAK and c-src to cooperate in induction of tyrosine phosphorylation of cellular substrates, suggesting that E4orf4 can interfere with the formation of a signaling complex at focal adhesion sites. Consistent with a functional role for E4orf4-Src interaction, overexpression of activated c-src dramatically potentiated E4orf4-induced membrane blebbing and apoptosis, whereas kinase dead c-src constructs inhibited E4orf4 effects on cell morphology and death. Moreover treatment of E4orf4-expressing cells with PP2, a selective Src kinase inhibitor, led to inhibition of E4orf4-dependent membrane blebbing and later to a marked decrease in E4orf4-induced nuclear condensation. Taken together, these observations indicate that expression of adenovirus 2 E4orf4 can initiate caspase-independent extranuclear manifestations of apoptosis through a modulation of Src family kinases and that these are involved in signaling E4orf4-dependent apoptosis. This study also suggests that Src family kinases are likely to play a role in the cytoplasmic execution of apoptotic programs.
Insights
Adenoviral E4orf4 protein triggers cell death independently of p53. It modulates Src family kinases, impacting cell structure and initiating apoptosis signaling through cytoplasmic pathways.
Area of Science:
- Molecular Biology
- Cell Biology
- Virology
Background:
- Adenoviral early region 4 open reading frame 4 (E4orf4) induces p53-independent apoptosis, selectively targeting transformed cells.
- E4orf4's mechanism involves early caspase-independent events, including membrane blebbing and cytoskeletal alterations.
Purpose of the Study:
- To investigate the role of Src family kinases in E4orf4-induced apoptosis.
- To elucidate the signaling pathways by which E4orf4 modulates cell death.
Main Methods:
- Expression of E4orf4 in transformed epithelial cells.
- Analysis of focal adhesions, actin cytoskeleton, and protein phosphorylation.
- Investigating interactions between E4orf4 and Src family kinases (c-src).
- Utilizing kinase inhibitors (PP2) and specific c-src constructs.
Main Results:
- E4orf4 expression caused caspase-independent membrane blebbing and altered focal adhesions and actin cytoskeleton organization.
- E4orf4 associated with and modulated Src family kinase activity, inhibiting FAK and paxillin phosphorylation while increasing cortactin phosphorylation.
- E4orf4 interfered with FAK and c-src cooperation in substrate phosphorylation.
- Activated c-src potentiated E4orf4 effects, while kinase-dead c-src inhibited them; PP2 treatment blocked E4orf4-induced blebbing and nuclear condensation.
Conclusions:
- Adenovirus 2 E4orf4 initiates caspase-independent apoptosis through modulation of Src family kinases.
- Src family kinases are involved in signaling E4orf4-dependent apoptosis and cytoplasmic execution of apoptotic programs.