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Epigenetic Upregulation of MAGE-A Isoforms Promotes Breast Cancer Cell Aggressiveness
Chaeun Oh1, Hwa-Ryeon Kim2, Sumin Oh1,3
1Laboratory of Biomedical Genomics, Department of Biological Sciences, Sookmyung Women's University, Seoul 04310, Korea.
Abstract:
After decades-long efforts to diagnose and treat breast cancer, the management strategy that has proved most successful to date is molecular-subtype-specific inhibition of the hormone receptors and HER2 that are expressed by individual cancers. Melanoma-associated antigen (MAGE) proteins comprise >40 highly conserved members that contain the MAGE homology domain. They are often overexpressed in multiple cancers and contribute to cancer progression and metastasis. However, it remains unclear whether the biological activity arising from MAGE gene expression is associated with breast cancer subtypes. In this study, we analyzed the RNA-sequencing (RNA-seq) data of 70 breast cancer cell lines and found that MAGEA12 and MAGEA3 were highly expressed in a subset of these lines. Significantly, MAGEA12 and MAGEA3 expression levels were independent of hormone receptor expression levels but were closely associated with markers of active histone modifications. This indicates that overexpression of these genes is attributable to epigenetic deregulation. RNA-seq of MAGEA12-depleted cells was then used to identify 382 candidate targets of MAGEA12 that were downregulated by MAGEA12 depletion. Furthermore, our gain-of-function experiments showed that MAGEA12 overexpression promoted aggressive behaviors of malignant breast cancer cells, including enhancing their cell migration and invasion. These changes were associated with increased epigenetic deregulation of the MAGEA12 signature genes. Thus, MAGEA12 may play an important role in breast cancer malignancy. Taken together, our findings suggest that MAGEA12 could be a promising therapeutic target in breast cancer, and its overexpression and epigenetic changes could serve as subtype classification biomarkers.
Insights
Melanoma-associated antigen (MAGE) proteins like MAGEA12 are epigenetically deregulated in breast cancer. MAGEA12 overexpression promotes cancer cell invasion and migration, suggesting it as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Current breast cancer management targets hormone receptors and HER2.
- Melanoma-associated antigen (MAGE) proteins are overexpressed in various cancers.
- The role of MAGE gene expression in breast cancer subtypes is not well understood.
Purpose of the Study:
- To investigate the association between MAGE gene expression and breast cancer subtypes.
- To explore the functional role of MAGEA12 in breast cancer malignancy.
- To identify MAGEA12 as a potential therapeutic target and biomarker.
Main Methods:
- Analysis of RNA-sequencing data from 70 breast cancer cell lines.
- Depletion and overexpression experiments for MAGEA12.
- RNA-sequencing to identify MAGEA12 target genes.
- Assessment of cell migration and invasion assays.
Main Results:
- MAGEA12 and MAGEA3 were highly expressed in a subset of breast cancer cell lines, independent of hormone receptor status.
- MAGEA12/MAGEA3 overexpression correlated with active histone modifications, indicating epigenetic deregulation.
- MAGEA12 depletion downregulated 382 candidate target genes.
- MAGEA12 overexpression enhanced breast cancer cell migration and invasion, linked to epigenetic changes.
Conclusions:
- MAGEA12 plays a significant role in breast cancer malignancy.
- MAGEA12 is a potential therapeutic target for breast cancer.
- MAGEA12 overexpression and associated epigenetic changes may serve as biomarkers for breast cancer subtype classification.
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