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The role of MerTK in promoting cell migration is enhanced by the oncogenic Ras/IL-33 signaling axis
Satoshi Ohta1, Kenji Tago1, Takahiro Kuchimaru2
1Department of Biochemistry, Jichi Medical University, Tochigi, Japan.
Abstract:
Ras genes are frequently mutated in many cancer types; however, there are currently no conclusively effective anticancer drugs against Ras-induced cancer. Therefore, the downstream effectors of Ras signaling need to be identified for the development of promising novel therapeutic approaches. We previously reported that oncogenic Ras induced the expression of NF-HEV/IL-33, a member of the interleukin-1 family, and showed that intracellular IL-33 was required for oncogenic Ras-induced cellular transformation. In the present study, we demonstrated that the c-Mer proto-oncogene tyrosine kinase (MerTK), a receptor tyrosine kinase, played essential roles in oncogenic Ras/IL-33 signaling. The expression of MerTK was enhanced in transformed NIH-3T3 cells by the expression of oncogenic Ras, H-Ras (G12V), in an IL-33-dependent manner. In human colorectal cancer tissues, MerTK expression also correlated with IL-33 expression. The knockdown of IL-33 or MerTK effectively attenuated the migration of NIH-3T3 cells transformed by H-Ras (G12V) and A549, LoVo, and HCT116 cells harboring an oncogenic K-Ras mutation. Furthermore, the suppression of Ras-induced cell migration by the knockdown of IL-33 was rescued by the enforced expression of MerTK. The present results also revealed that MerTK was effectively phosphorylated in NIH-3T3 cells transformed by Ras (G12V). Ras signaling was essential for the tyrosine phosphorylation of MerTK, and the kinase activity of MerTK was indispensable for accelerating cell migration. Collectively, the present results reveal a novel role for MerTK in cancer malignancy, which may be utilized to develop novel therapeutic strategies that target Ras-transformed cells.
Insights
Oncogenic Ras signaling activates interleukin-33 (IL-33) and receptor tyrosine kinase MerTK, driving cancer cell migration. Targeting MerTK offers a new strategy against Ras-induced cancers.
Area of Science:
- Molecular Oncology
- Cell Signaling
- Cancer Therapeutics
Background:
- Ras mutations are common in cancer, but effective treatments are lacking.
- Downstream effectors of Ras signaling are crucial for developing new cancer therapies.
- Previous work linked oncogenic Ras to interleukin-33 (IL-33) and cellular transformation.
Purpose of the Study:
- To investigate the role of c-Mer proto-oncogene tyrosine kinase (MerTK) in oncogenic Ras signaling.
- To identify novel therapeutic targets for Ras-induced cancers.
Main Methods:
- Studied Ras-transformed NIH-3T3 cells and human colorectal cancer tissues.
- Utilized gene knockdown of IL-33 and MerTK.
- Analyzed MerTK phosphorylation and kinase activity.
Main Results:
- Oncogenic Ras enhanced MerTK expression in an IL-33-dependent manner.
- MerTK expression correlated with IL-33 in colorectal cancer.
- Knockdown of IL-33 or MerTK reduced cancer cell migration; MerTK kinase activity was essential.
Conclusions:
- MerTK plays a critical role in Ras/IL-33 signaling and cancer cell migration.
- MerTK represents a potential therapeutic target for Ras-driven malignancies.
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