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Published on: August 23, 2024
Alpha-fetoprotein antagonizes X-linked inhibitor of apoptosis protein anticaspase activity and disrupts XIAP-caspase
Elena Dudich1, Lidia Semenkova, Igor Dudich
1Institute of Immunological Engineering, Lyubuchany, Russia. elena_dudich@mail.ru
Abstract:
Previous results have shown that the human oncoembryonic protein alpha-fetoprotein (AFP) induces dose-dependent targeting apoptosis in tumor cells, accompanied by cytochrome c release and caspase 3 activation. AFP positively regulates cytochrome c/dATP-mediated apoptosome complex formation in a cell-free system, stimulates release of the active caspases 9 and 3 and displaces cIAP-2 from the apoptosome and from its complex with recombinant caspases 3 and 9 [Semenkova et al. (2003) Eur. J. Biochem. 270, 276-282]. We suggested that AFP might affect the X-linked inhibitor of apoptosis protein (XIAP)-caspase interaction by blocking binding and activating the apoptotic machinery via abrogation of inhibitory signaling. We show here that AFP cancels XIAP-mediated inhibition of endogenous active caspases in cytosolic lysates of tumor cells, as well as XIAP-induced blockage of active recombinant caspase 3 in a reconstituted cell-free system. A direct protein-protein interaction assay showed that AFP physically interacts with XIAP molecule, abolishes XIAP-caspase binding and rescues caspase 3 from inhibition. The data suggest that AFP is directly involved in targeting positive regulation of the apoptotic pathway dysfunction in cancer cells inhibiting the apoptosis protein function inhibitor, leading to triggering of apoptosis machinery.
Insights
Alpha-fetoprotein (AFP) inhibits the apoptosis inhibitor XIAP, directly interacting with it to block XIAP-caspase binding. This mechanism rescues caspase activity, triggering apoptosis in cancer cells.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Human oncoembryonic protein alpha-fetoprotein (AFP) induces apoptosis in tumor cells.
- AFP positively regulates apoptosome complex formation and caspase activation.
- Previous studies suggested AFP may interfere with XIAP-caspase interactions.
Purpose of the Study:
- To investigate the mechanism by which AFP affects XIAP-mediated inhibition of caspases.
- To determine if AFP directly interacts with XIAP.
- To elucidate AFP's role in regulating apoptosis in cancer cells.
Main Methods:
- Cell-free systems using cytosolic lysates and recombinant proteins.
- Protein-protein interaction assays.
- Assessment of caspase activity and inhibition.
Main Results:
- AFP abrogates XIAP-mediated inhibition of endogenous and recombinant caspases.
- AFP directly binds to XIAP, disrupting XIAP-caspase interactions.
- AFP rescues caspase 3 from XIAP-induced inhibition.
Conclusions:
- AFP directly interacts with XIAP, inhibiting its function as an apoptosis suppressor.
- AFP's interaction with XIAP leads to the activation of apoptotic pathways in cancer cells.
- AFP represents a potential therapeutic target for cancer treatment by modulating apoptosis.
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