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MNK1/2 inhibition limits oncogenicity and metastasis of KIT-mutant melanoma
Yao Zhan1, Jun Guo2, William Yang1
1Experimental Medicine, Faculty of Medicine, McGill University, Montréal, Quebec, Canada.
Abstract:
Melanoma can be stratified into unique subtypes based on distinct pathologies. The acral/mucosal melanoma subtype is characterized by aberrant and constitutive activation of the proto-oncogene receptor tyrosine kinase C-KIT, which drives tumorigenesis. Treatment of these melanoma patients with C-KIT inhibitors has proven challenging, prompting us to investigate the downstream effectors of the C-KIT receptor. We determined that C-KIT stimulates MAP kinase-interacting serine/threonine kinases 1 and 2 (MNK1/2), which phosphorylate eukaryotic translation initiation factor 4E (eIF4E) and render it oncogenic. Depletion of MNK1/2 in melanoma cells with oncogenic C-KIT inhibited cell migration and mRNA translation of the transcriptional repressor SNAI1 and the cell cycle gene CCNE1. This suggested that blocking MNK1/2 activity may inhibit tumor progression, at least in part, by blocking translation initiation of mRNAs encoding cell migration proteins. Moreover, we developed an MNK1/2 inhibitor (SEL201), and found that SEL201-treated KIT-mutant melanoma cells had lower oncogenicity and reduced metastatic ability. Clinically, tumors from melanoma patients harboring KIT mutations displayed a marked increase in MNK1 and phospho-eIF4E. Thus, our studies indicate that blocking MNK1/2 exerts potent antimelanoma effects and support blocking MNK1/2 as a potential strategy to treat patients positive for KIT mutations.
Insights
Targeting MNK1/2, which are activated by C-KIT in melanoma, inhibits tumor growth and metastasis. This study highlights MNK1/2 inhibitors as a promising treatment for C-KIT-mutant melanoma.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Acral/mucosal melanoma subtypes are driven by activated C-KIT signaling.
- Targeting C-KIT directly in these melanomas presents therapeutic challenges.
- Understanding downstream C-KIT effectors is crucial for novel treatment strategies.
Purpose of the Study:
- To investigate the downstream signaling pathways of C-KIT in melanoma.
- To identify potential therapeutic targets for C-KIT-mutant melanoma.
- To evaluate the efficacy of inhibiting MNK1/2 in melanoma treatment.
Main Methods:
- Investigated C-KIT downstream effectors using melanoma cell lines.
- Assessed the role of MNK1/2 in cell migration and mRNA translation.
- Developed and tested an MNK1/2 inhibitor (SEL201).
- Analyzed clinical samples from melanoma patients with KIT mutations.
Main Results:
- C-KIT activates MNK1/2, which phosphorylate and oncogenically activate eIF4E.
- MNK1/2 depletion reduced melanoma cell migration and translation of SNAI1 and CCNE1.
- The MNK1/2 inhibitor SEL201 decreased melanoma cell oncogenicity and metastatic potential.
- Increased MNK1 and phospho-eIF4E levels were observed in tumors with KIT mutations.
Conclusions:
- MNK1/2 are key downstream effectors of C-KIT in melanoma tumorigenesis.
- Inhibiting MNK1/2 demonstrates potent anti-melanoma effects.
- Blocking MNK1/2 represents a potential therapeutic strategy for KIT-mutant melanoma patients.
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