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Runx2 Suppression by miR-342 and miR-363 Inhibits Multiple Myeloma Progression
Pramod S Gowda1, Benjamin J Wildman2, Timothy N Trotter1
1Department of Pathology, University of Alabama at Birmingham, Birmingham, Alabama.
Abstract:
In multiple myeloma, abnormal plasma cells accumulate and proliferate in the bone marrow. Recently, we observed that Runx2, a bone-specific transcription factor, is highly expressed in multiple myeloma cells and is a major driver of multiple myeloma progression in bone. The primary goal of the present study was to identify Runx2-targeting miRNAs that can reduce tumor growth. Expression analysis of a panel of miRNAs in multiple myeloma patient specimens, compared with healthy control specimens, revealed that metastatic multiple myeloma cells express low levels of miR-342 and miR-363 but high levels of Runx2. Reconstituting multiple myeloma cells (CAG) with miR-342 and miR-363 reduced the abundance of Runx2 and the expression of metastasis-promoting Runx2 target genes RANKL and DKK1, and suppressed Runx2 downstream signaling pathways Akt/β-catenin/survivin, which are required for multiple myeloma tumor progression. Intravenous injection of multiple myeloma cells (5TGM1), stably overexpressing miR-342 and miR-363 alone or together, into syngeneic C57Bl/KaLwRij mice resulted in a significant suppression of 5TGM1 cell growth, decreased osteoclasts and increased osteoblasts, and increased antitumor immunity in the bone marrow, compared with mice injected with 5TGM1 cells expressing a miR-Scramble control. In summary, these results demonstrate that enhanced expression of miR-342 and miR-363 in multiple myeloma cells inhibits Runx2 expression and multiple myeloma growth, decreases osteolysis, and enhances antitumor immunity. Thus, restoring the function of Runx2-targeting by miR-342 and miR-363 in multiple myeloma cells may afford a therapeutic benefit by preventing multiple myeloma progression.Implications: miR-342 and miR-363-mediated downregulation of Runx2 expression in multiple myeloma cells prevents multiple myeloma progression. Mol Cancer Res; 16(7); 1138-48. ©2018 AACR.
Insights
Restoring miR-342 and miR-363 levels in multiple myeloma cells inhibits Runx2 expression, reducing tumor growth and bone destruction. This approach enhances anti-tumor immunity, offering a potential therapeutic strategy for multiple myeloma.
Area of Science:
- Molecular Oncology
- Cancer Biology
- MicroRNA Therapeutics
Background:
- Multiple myeloma is characterized by abnormal plasma cell proliferation in bone marrow.
- Runx2, a bone-specific transcription factor, drives multiple myeloma progression in bone.
- Identifying Runx2-targeting microRNAs (miRNAs) is crucial for reducing tumor growth.
Purpose of the Study:
- To identify miRNAs targeting Runx2 in multiple myeloma.
- To evaluate the therapeutic potential of restoring miR-342 and miR-363 levels.
Main Methods:
- Expression analysis of miRNAs in multiple myeloma patient samples versus healthy controls.
- Reconstitution of multiple myeloma cells with miR-342 and miR-363.
- In vivo studies using mouse models of multiple myeloma.
Main Results:
- Metastatic multiple myeloma cells show low miR-342/miR-363 and high Runx2 expression.
- Restoring miR-342/miR-363 reduced Runx2, RANKL, DKK1, and downstream signaling (Akt/β-catenin/survivin).
- In vivo, miR-342/miR-363 overexpression suppressed tumor growth, decreased osteoclasts, increased osteoblasts, and enhanced anti-tumor immunity.
Conclusions:
- Enhanced miR-342 and miR-363 expression inhibits Runx2, multiple myeloma growth, and osteolysis.
- Restoring Runx2-targeting miRNAs offers a therapeutic strategy to prevent multiple myeloma progression.
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