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Interplay between Ret and Fap-1 regulates CD95-mediated apoptosis in medullary thyroid cancer cells
Valentina Nicolini1, Giuliana Cassinelli, Giuditta Cuccuru
1Molecular Pharmacology Unit, Department of Experimental Oncology and Molecular Medicine, Fondazione IRCCS Istituto Nazionale dei Tumori, Milan, Italy.
Abstract:
Emerging evidence suggests that Ret oncoproteins expressed in medullary thyroid cancer (MTC) might evade the pro-apoptotic function of the dependence receptor proto-Ret by directly impacting the apoptosis machinery. Identification of the molecular determinants of the interplay between Ret signaling and apoptosis might provide a relevant contribution to the optimization of Ret-targeted therapies. Here, we describe the cross-talk between Ret-M918T oncogenic mutant responsible for type 2B multiple endocrine syndrome (MEN2B), and components of death receptor-mediated extrinsic apoptosis pathway. In the human MEN2B-type MTC cell line MZ-CRC-1 expressing Ret-M918T, Ret was found associated with Fap-1, known as inhibitor of the CD95 death receptor trafficking to the cell membrane, and with procaspase-8, the initiator pro-form caspase in the extrinsic apoptosis pathway. Cell treatment with the anti-tumor Ret kinase inhibitor RPI-1 inhibited tyrosine phosphorylation of procaspase-8, likely inducing its local activation, followed by downregulation of both Ret and Fap-1, and translocation of CD95 into lipid rafts. According to the resulting increase of CD95 cell surface expression, the CD95 agonist antibody CH11 enhanced RPI-1-induced cell growth inhibition and apoptosis. RET RNA interference downregulated Fap-1 protein in MZ-CRC-1 cells, whereas exogenous RET-M918T upregulated Fap-1 in HEK293 cells. Overall, these data indicate that the Ret oncoprotein exerts opposing controls on Fap-1 and CD95, increasing Fap-1 expression and decreasing CD95 cell surface expression. The functional interplay of the Ret mutant with the extrinsic apoptosis pathway provides a mechanism possibly contributing to MTC malignant phenotype and a rational basis for novel therapeutic strategies combining Ret inhibitors and CD95 agonists.
Insights
Ret oncoproteins in medullary thyroid cancer evade apoptosis by interacting with Fap-1 and procaspase-8. Inhibiting Ret kinase with RPI-1 and using CD95 agonists may offer new therapeutic strategies.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Medullary thyroid cancer (MTC) involves Ret oncoproteins that may evade apoptosis.
- Understanding the Ret signaling and apoptosis interplay is crucial for optimizing Ret-targeted therapies.
Purpose of the Study:
- To investigate the cross-talk between the Ret-M918T oncogenic mutant and the extrinsic apoptosis pathway in MTC.
- To identify molecular mechanisms underlying Ret-mediated apoptosis evasion.
Main Methods:
- Utilized the human MEN2B-type MTC cell line MZ-CRC-1 and HEK293 cells.
- Employed Ret kinase inhibitor RPI-1, CD95 agonist antibody CH11, and RET RNA interference.
- Assessed protein interactions, phosphorylation, cell surface expression, and apoptosis induction.
Main Results:
- Ret was found associated with Fap-1 and procaspase-8 in MZ-CRC-1 cells.
- RPI-1 treatment inhibited procaspase-8 phosphorylation, downregulated Ret and Fap-1, and increased CD95 surface expression.
- Combined RPI-1 and CH11 enhanced cell growth inhibition and apoptosis.
- RET RNA interference downregulated Fap-1, while RET-M918T upregulated Fap-1.
Conclusions:
- The Ret oncoprotein modulates Fap-1 and CD95, decreasing CD95 surface expression and increasing Fap-1.
- This interplay contributes to the MTC malignant phenotype.
- Combining Ret inhibitors with CD95 agonists presents a rational therapeutic strategy for MTC.
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