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CCN6 Suppresses Metaplastic Breast Carcinoma by Antagonizing Wnt/β-Catenin Signaling to Inhibit EZH2-Driven EMT
Maria E Gonzalez1,2, Bryce Brophy1, Ahmad Eido1,2
1Department of Pathology, University of Michigan Medical School, Ann Arbor, Michigan.
Abstract:
Metaplastic breast carcinomas (mBrCA) are a highly aggressive subtype of triple-negative breast cancer with histologic evidence of epithelial-to-mesenchymal transition and aberrant differentiation. Inactivation of the tumor suppressor gene cellular communication network factor 6 (CCN6; also known as Wnt1-induced secreted protein 3) is a feature of mBrCAs, and mice with conditional inactivation of Ccn6 in mammary epithelium (Ccn6-KO) develop spindle mBrCAs with epithelial-to-mesenchymal transition. Elucidation of the precise mechanistic details of how CCN6 acts as a tumor suppressor in mBrCA could help identify improved treatment strategies. In this study, we showed that CCN6 interacts with the Wnt receptor FZD8 and coreceptor LRP6 on mBrCA cells to antagonize Wnt-induced activation of β-catenin/TCF-mediated transcription. The histone methyltransferase EZH2 was identified as a β-catenin/TCF transcriptional target in Ccn6-KO mBrCA cells. Inhibiting Wnt/β-catenin/TCF signaling in Ccn6-KO mBrCA cells led to reduced EZH2 expression, decreased histone H3 lysine 27 trimethylation, and deregulation of specific target genes. Pharmacologic inhibition of EZH2 reduced growth and metastasis of Ccn6-KO mBrCA mammary tumors in vivo. Low CCN6 is significantly associated with activated β-catenin and high EZH2 in human spindle mBrCAs compared with other subtypes. Collectively, these findings establish CCN6 as a key negative regulator of a β-catenin/TCF/EZH2 axis and highlight the inhibition of β-catenin or EZH2 as a potential therapeutic approach for patients with spindle mBrCAs. Significance: CCN6 deficiency drives metaplastic breast carcinoma growth and metastasis by increasing Wnt/β-catenin activation to upregulate EZH2, identifying EZH2 inhibition as a mechanistically guided treatment strategy for this deadly form of breast cancer.
Insights
Cellular communication network factor 6 (CCN6) normally suppresses aggressive spindle metaplastic breast cancer. Its deficiency activates Wnt/β-catenin signaling, increasing EZH2, a target for treating this deadly cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Metaplastic breast carcinoma (mBrCA) is an aggressive triple-negative breast cancer subtype.
- Inactivation of the tumor suppressor gene CCN6 is common in mBrCAs.
- Understanding CCN6's tumor-suppressive mechanisms is crucial for developing new treatments.
Purpose of the Study:
- To elucidate the mechanistic role of CCN6 in metaplastic breast carcinoma.
- To identify therapeutic targets for CCN6-deficient mBrCA.
Main Methods:
- Investigated CCN6 interaction with Wnt signaling components (FZD8, LRP6).
- Utilized a mouse model of conditional Ccn6 inactivation (Ccn6-KO) in mammary epithelium.
- Assessed the impact of Wnt/β-catenin/TCF signaling inhibition on EZH2 expression and histone methylation.
- Evaluated the efficacy of EZH2 inhibition in Ccn6-KO mBrCA models.
- Correlated CCN6, β-catenin, and EZH2 levels in human mBrCA samples.
Main Results:
- CCN6 antagonizes Wnt-induced β-catenin/TCF signaling in mBrCA cells.
- EZH2 is a direct transcriptional target of β-catenin/TCF in Ccn6-KO mBrCA.
- Inhibition of Wnt/β-catenin/TCF signaling reduces EZH2 expression and histone trimethylation.
- Pharmacologic EZH2 inhibition suppresses tumor growth and metastasis in Ccn6-KO mBrCA.
- Low CCN6 correlates with activated β-catenin and high EZH2 in human spindle mBrCAs.
Conclusions:
- CCN6 acts as a tumor suppressor by negatively regulating a β-catenin/TCF/EZH2 signaling axis.
- CCN6 deficiency promotes mBrCA progression via Wnt/β-catenin-mediated EZH2 upregulation.
- Targeting β-catenin or EZH2 represents a promising therapeutic strategy for spindle mBrCAs.
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