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Author Spotlight: Assessing the Potential of Circulating Tumor Cells in Leptomeningeal Disease Research
Published on: March 29, 2024
IGF-1R is a molecular determinant for response to p53 reactivation therapy in conjunctival melanoma
Dawei Song1, Sonia Cismas1, Caitrin Crudden1,2
1Department of Oncology and Pathology, BioClinicum, Karolinska Institutet and Karolinska University Hospital, Stockholm, Sweden.
Abstract:
As the p53 tumor suppressor is rarely mutated in conjunctival melanoma (CM), we investigated its activation as a potential therapeutic strategy. Preventing p53/Mdm2 interaction by Nutlin-3, the prototypical Mdm2 antagonist, or via direct siRNA Mdm2 depletion, increased p53 and inhibited viability in CM cell lines. The sensitivity to Nutlin-3 p53 reactivation with concomitant Mdm2 stabilization was higher than that achieved by siRNA, indicative of effects on alternative Mdm2 targets, identified as the cancer-protective IGF-1R. Nutlin-3 treatment increased the association between IGF-1R and β-arrestin1, the adaptor protein that brings Mdm2 to the IGF-1R, initiating receptor degradation in a ligand-dependent manner. Controlled expression of β-arrestin1 augmented inhibitory Nutlin-3 effects on CM survival through enhanced IGF-1R degradation. Yet, the effect of IGF-1R downregulation on cell proliferation is balanced by β-arrestin1-induced p53 inhibition. As mitomycin (MMC) is a well-established adjuvant treatment for CM, and it triggers p53 activation through genotoxic stress, we evaluated how these alternative p53-targeting strategies alter the cancer-relevant bioactivities of CM. In 2D and 3D in vitro models, Nutlin-3 or MMC alone, or in combination, reduces the overall cell tumor growth ~30%, with double treatment inhibition rate only marginally higher than single-drug regimens. However, histopathological evaluation of the 3D models revealed that Nutlin-3 was the most effective, causing necrotic areas inside spheroids and complete loss of nuclear staining for the proliferative marker Ki67. These findings were further validated in vivo; zebrafish xenografts demonstrate that Nutlin-3 alone has higher efficacy in restraining CM tumor cell growth and preventing metastasis. Combined, these results reveal that β-arrestin1 directs Mdm2 toward different substrates, thus balancing IGF-1R pro-tumorigenic and p53-tumor suppressive signals. This study defines a potent dual-hit strategy: simultaneous control of a tumor-promoter (IGF-1R) and tumor-suppressor (p53), which ultimately mitigates recurrent and metastatic potential, thus opening up targeted therapy to CM.
Insights
Activating the p53 tumor suppressor using Nutlin-3 effectively targets conjunctival melanoma (CM) by inhibiting IGF-1R and p53 pathways, showing promise for CM therapy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Conjunctival melanoma (CM) rarely features p53 mutations, suggesting alternative therapeutic strategies targeting p53 activation.
- Mdm2 is a key inhibitor of p53; its antagonism is a potential therapeutic avenue for CM.
- Insulin-like growth factor 1 receptor (IGF-1R) plays a role in cancer promotion and its interaction with Mdm2 is relevant.
Purpose of the Study:
- To investigate the therapeutic potential of activating the p53 tumor suppressor in conjunctival melanoma.
- To explore the role of Mdm2, IGF-1R, and β-arrestin1 in CM cell viability and proliferation.
- To evaluate novel therapeutic strategies targeting both tumor-promoting and tumor-suppressing pathways in CM.
Main Methods:
- Utilized Nutlin-3 (Mdm2 antagonist) and Mdm2 siRNA to modulate p53 and Mdm2 levels in CM cell lines.
- Investigated the interaction between IGF-1R, Mdm2, and β-arrestin1 using biochemical assays.
- Assessed therapeutic efficacy in 2D and 3D in vitro models, and in vivo zebrafish xenografts, with and without mitomycin (MMC).
Main Results:
- Nutlin-3 treatment effectively reactivated p53 and inhibited CM cell viability, surpassing siRNA-mediated Mdm2 depletion.
- Nutlin-3 modulated IGF-1R degradation via β-arrestin1, balancing IGF-1R's pro-tumorigenic effects and p53's tumor-suppressive activity.
- Both Nutlin-3 and MMC reduced tumor growth, with Nutlin-3 demonstrating superior efficacy in inducing necrosis and inhibiting proliferation marker Ki67 in 3D models and in vivo.
Conclusions:
- β-arrestin1 plays a crucial role in directing Mdm2 to different substrates, thereby regulating both IGF-1R and p53 signaling.
- Simultaneous targeting of the tumor promoter IGF-1R and the tumor suppressor p53 represents a potent dual-hit strategy for CM.
- This approach holds promise for mitigating the recurrent and metastatic potential of CM, paving the way for targeted therapies.
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