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E1B 19,000-molecular-weight protein interacts with and inhibits CED-4-dependent, FLICE-mediated apoptosis
1Center for Advanced Biotechnology and Medicine, Rutgers University, Piscataway, New Jersey 08854, USA.
Abstract:
Genetic studies of the nematode Caenorhabditis elegans (C. elegans) have identified several important components of the cell death pathway, most notably CED-3, CED-4, and CED-9. CED-4 directly interacts with the Bcl-2 homologue CED-9 (or the mammalian Bcl-2 family member Bcl-xL) and the caspase CED-3 (or the mammalian caspases ICE and FLICE). This trimolecular complex of CED-4, CED-3, and CED-9 is functional in that CED-9 inhibits CED-4 from activating CED-3 and thereby inhibits apoptosis in heterologous systems. The E1B 19,000-molecular weight protein (E1B 19K) is a potent apoptosis inhibitor and the adenovirus homologue of Bcl-2-related apoptosis inhibitors. Since E1B 19K and Bcl-xL have functional similarity, we determined if E1B 19K interacts with CED-4 and regulates CED-4-dependent caspase activation. Binding analysis indicated that E1B 19K interacts with CED-4 in a Saccharomyces cerevisiae two-hybrid assay, in vitro, and in mammalian cell lysates. The subcellular localization pattern of CED-4 was dramatically changed by E1B 19K, supporting the theory of a functional interaction between CED-4 and E1B 19K. Whereas expression of CED-4 alone could not induce cell death, coexpression of CED-4 and FLICE augmented cell death induction by FLICE, which was blocked by expression of E1B 19K. Even though E1B 19K did not prevent FLICE-induced apoptosis, it did inhibit CED-4-dependent, FLICE-mediated apoptosis, which suggested that CED-4 was required for E1B 19K to block FLICE activation. Thus, E1B 19K functions through interacting with CED-4, and presumably a mammalian homologue of CED-4, to inhibit caspase activation and apoptosis.
Insights
The adenovirus E1B 19K protein interacts with CED-4 to inhibit apoptosis. This interaction is crucial for E1B 19K to block CED-4-dependent caspase activation and prevent programmed cell death.
Area of Science:
- Molecular Biology
- Cell Biology
- Virology
Background:
- The nematode Caenorhabditis elegans (C. elegans) has key cell death pathway components: CED-3, CED-4, and CED-9.
- CED-9 inhibits CED-4 from activating CED-3, thereby regulating apoptosis.
- Adenovirus E1B 19,000-molecular weight protein (E1B 19K) is an apoptosis inhibitor and a homologue of Bcl-2 family proteins.
Purpose of the Study:
- To investigate if E1B 19K interacts with CED-4.
- To determine if E1B 19K regulates CED-4-dependent caspase activation.
- To elucidate the mechanism by which E1B 19K inhibits apoptosis.
Main Methods:
- Yeast two-hybrid assays to detect protein interactions.
- In vitro binding assays.
- Analysis of protein localization in mammalian cell lysates.
- Coexpression studies to assess apoptosis induction and inhibition.
Main Results:
- E1B 19K directly interacts with CED-4 in yeast, in vitro, and in mammalian cells.
- E1B 19K alters the subcellular localization of CED-4.
- E1B 19K inhibits CED-4-dependent, FLICE-mediated apoptosis, but not FLICE-induced apoptosis alone.
- CED-4 is required for E1B 19K to block FLICE activation.
Conclusions:
- E1B 19K functions by interacting with CED-4.
- This interaction inhibits caspase activation and apoptosis.
- E1B 19K likely acts through mammalian homologues of CED-4 to regulate apoptosis.