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RBM7 deficiency promotes breast cancer metastasis by coordinating MFGE8 splicing switch and NF-kB pathway
Fang Huang1, Zhenwei Dai1, Jinmiao Yu1
1Sino-US Research Center for Cancer Translational Medicine of the Second Affiliated Hospital of Dalian Medical University & Institute of Cancer Stem Cell, Dalian Medical University, Dalian, China.
Abstract:
Aberrant alternative splicing is well-known to be closely associated with tumorigenesis of various cancers. However, the intricate mechanisms underlying breast cancer metastasis driven by deregulated splicing events remain largely unexplored. Here, we unveiled that RBM7 is decreased in lymph node and distant organ metastases of breast cancer as compared to primary lesions and low expression of RBM7 is correlated with the reduced disease-free survival of breast cancer patients. Breast cancer cells with RBM7 depletion exhibited an increased potential for lung metastasis compared to scramble control cells. The absence of RBM7 stimulated breast cancer cell migration, invasion, and angiogenesis. Mechanistically, RBM7 controlled the splicing switch of MFGE8, favoring the production of the predominant isoform of MFGE8, MFGE8-L. This resulted in the attenuation of STAT1 phosphorylation and alterations in cell adhesion molecules. MFGE8-L exerted an inhibitory effect on the migratory and invasive capability of breast cancer cells, while the truncated isoform MFGE8-S, which lack the second F5/8 type C domain had the opposite effect. In addition, RBM7 negatively regulates the NF-κB cascade and an NF-κB inhibitor could obstruct the increase in HUVEC tube formation caused by RBM7 silencing. Clinically, we noticed a positive correlation between RBM7 expression and MFGE8 exon7 inclusion in breast cancer tissues, providing new mechanistic insights for molecular-targeted therapy in combating breast cancer.
Insights
Reduced RBM7 expression promotes breast cancer metastasis by altering splicing of MFGE8. This splicing switch enhances cell migration, invasion, and angiogenesis, highlighting RBM7 as a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Aberrant alternative splicing is linked to cancer development.
- Mechanisms of breast cancer metastasis driven by splicing dysregulation are not fully understood.
Purpose of the Study:
- To investigate the role of RBM7 in breast cancer metastasis.
- To elucidate the molecular mechanisms by which RBM7 influences cancer progression.
Main Methods:
- Assessed RBM7 expression in primary and metastatic breast cancer tissues.
- Depleted RBM7 in breast cancer cells to evaluate metastatic potential.
- Analyzed the effect of RBM7 on MFGE8 splicing and downstream signaling pathways (STAT1, NF-κB).
- Correlated RBM7 expression with MFGE8 splicing in clinical samples.
Main Results:
- RBM7 expression is decreased in metastatic breast cancer and correlates with reduced survival.
- RBM7 depletion enhances breast cancer cell migration, invasion, and angiogenesis.
- RBM7 controls MFGE8 splicing, favoring the inhibitory MFGE8-L isoform.
- RBM7 negatively regulates NF-κB signaling, impacting angiogenesis.
Conclusions:
- RBM7 acts as a tumor suppressor in breast cancer metastasis by regulating MFGE8 splicing.
- Targeting RBM7 or its downstream pathways may offer novel therapeutic strategies for breast cancer.
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