Structure-based identification of a new IAP-targeting compound that induces cancer cell death inducing NF-κB pathway
Federica Cossu1, Simone Camelliti1,2, Daniele Lecis2
1CNR-IBF, Consiglio Nazionale delle Ricerche - Istituto di Biofisica, Via Celoria, 26, I-20133 Milan, Italy.
Abstract:
Inhibitors of apoptosis proteins (IAPs) are validated onco-targets, as their overexpression correlates with cancer onset, progression, diffusion and chemoresistance. IAPs regulate cell death survival pathways, inflammation, and immunity. Targeting IAPs, by impairing their protein-protein interaction surfaces, can affect events occurring at different stages of cancer development. To this purpose, we employed a rational virtual screening approach to identify compounds predicted to interfere with the assembly of pro-survival macromolecular complexes. One of the candidates, FC2, was shown to bind in vitro the BIR1 domains of both XIAP and cIAP2. Moreover, we demonstrated that FC2 can induce cancer cell death as a single agent and, more potently, in combination with the Smac-mimetic SM83 or with the cytokine TNF. FC2 determined a prolonged activation of the NF-κB pathway, accompanied to a stabilization of XIAP-TAB1 complex. This candidate molecule represents a valuable lead compound for the development of a new class of IAP-antagonists for cancer treatment.
Insights
Researchers identified FC2, a novel compound that inhibits apoptosis proteins (IAPs), to treat cancer. FC2 shows potential as a lead for developing new IAP-antagonist drugs, enhancing cancer cell death when combined with other therapies.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Inhibitors of apoptosis proteins (IAPs) are crucial regulators of cell death, inflammation, and immunity.
- Overexpression of IAPs is linked to cancer development, progression, metastasis, and resistance to chemotherapy.
- Targeting IAP protein-protein interactions offers a strategy to disrupt cancer cell survival pathways.
Purpose of the Study:
- To identify novel compounds that interfere with the assembly of pro-survival macromolecular complexes regulated by IAPs.
- To evaluate the potential of identified compounds as therapeutic agents for cancer treatment.
Main Methods:
- Rational virtual screening was employed to identify potential IAP-targeting compounds.
- In vitro binding assays were performed to assess compound interaction with IAP domains (XIAP, cIAP2 BIR1).
- In vitro studies evaluated the efficacy of the lead compound (FC2) as a single agent and in combination therapies for inducing cancer cell death.
Main Results:
- FC2 was identified as a compound that binds to the BIR1 domains of XIAP and cIAP2.
- FC2 demonstrated the ability to induce cancer cell death as a monotherapy.
- FC2 exhibited enhanced potency in combination with Smac-mimetic SM83 or TNF, prolonging NF-κB pathway activation and stabilizing the XIAP-TAB1 complex.
Conclusions:
- FC2 represents a promising lead compound for a new class of IAP-antagonists.
- This molecule has potential for developing novel cancer therapeutics targeting IAP-mediated survival pathways.
- The findings support further development of FC2 for cancer treatment strategies.
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