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Published on: July 17, 2019
Loss of RASSF4 Expression in Multiple Myeloma Promotes RAS-Driven Malignant Progression
Eva De Smedt1, Ken Maes1, Stefaan Verhulst2
1Department of Hematology and Immunology-Myeloma Center Brussels, Vrije Universiteit Brussel, Brussels, Belgium.
Abstract:
RAS mutations occur frequently in multiple myeloma (MM), but apart from driving progression, they can also stimulate antitumor effects by activating tumor-suppressive RASSF proteins. Although this family of death effector molecules are often silenced in cancers, functional data about RASSF proteins in MM are lacking. Here, we report that RASSF4 is downregulated during MM progression and correlates with a poor prognosis. Promoter methylation analysis in human cell lines revealed an inverse correlation between RASSF4 mRNA levels and methylation status. Epigenetic modulating agents restored RASSF4 expression. Enforced expression of RASSF4 induced G2-phase cell-cycle arrest and apoptosis in human cell lines, reduced primary MM cell viability, and blocked MM growth in vivo Mechanistic investigations showed that RASSF4 linked RAS to several pro-death pathways, including those regulated by the kinases MST1, JNK, and p38. By activating MST1 and the JNK/c-Jun pathway, RASSF4 sensitized MM cells to bortezomib. Genetic or pharmacological elevation of RASSF4 levels increased the anti-MM effects of the clinical relevant MEK1/2 inhibitor trametinib. Kinome analysis revealed that this effect was mediated by concomitant activation of the JNK/c-Jun pathway along with inactivation of the MEK/ERK and PI3K/mTOR/Akt pathways. Overall, our findings establish RASSF4 as a tumor-suppressive hub in MM and provide a mechanistic rationale for combining trametinib with HDAC inhibitors or bortezomib to treat patients with tumors exhibiting low RASSF4 expression.Significance: These findings provide a mechanistic rationale for combining trametinib with HDAC inhibitors or bortezomib in patients with multiple myeloma whose tumors exhibit low RASSF4 expression. Cancer Res; 78(5); 1155-68. ©2017 AACR.
Insights
RAS mutations in multiple myeloma (MM) can activate tumor-suppressive RASSF4. Restoring RASSF4 induces cell death and blocks growth, suggesting new therapeutic combinations for MM.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- RAS mutations are common in multiple myeloma (MM) and can paradoxically promote anti-tumor effects via RASSF proteins.
- RASSF proteins, crucial for tumor suppression, are often silenced in cancers, but their role in MM remains unclear.
Purpose of the Study:
- To investigate the role of RASSF4 in multiple myeloma progression and its potential as a therapeutic target.
- To elucidate the mechanisms by which RASSF4 exerts its tumor-suppressive functions in MM.
Main Methods:
- Analysis of RASSF4 expression and methylation in MM cell lines and patient samples.
- Functional studies involving enforced RASSF4 expression in MM cells, including cell cycle, apoptosis, and in vivo tumor growth assays.
- Mechanistic studies using kinase assays and pathway analysis to identify RASSF4-regulated signaling networks.
Main Results:
- RASSF4 is downregulated in progressing MM and associated with poor prognosis.
- Promoter methylation inversely correlates with RASSF4 expression, which can be restored by epigenetic agents.
- Enforced RASSF4 expression induces cell cycle arrest, apoptosis, reduces MM cell viability, and inhibits tumor growth in vivo.
- RASSF4 activates MST1, JNK, and p38 pathways, sensitizing MM cells to bortezomib and enhancing trametinib efficacy.
Conclusions:
- RASSF4 functions as a tumor suppressor in MM by linking RAS signaling to pro-death pathways.
- RASSF4 downregulation is a key event in MM progression.
- Combining trametinib with HDAC inhibitors or bortezomib is a promising strategy for MM patients with low RASSF4 expression.
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