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Published on: June 9, 2023
RING induces cell cycle arrest and apoptosis in human breast cancer cells by regulating the HSF1/MT2A axis
1Department of Oncology, The Second Affiliated Hospital of Xi'an Jiaotong University, Xi'an, 710004, Shaanxi, China.
Abstract:
It was reported that lowly expressed RING1 indicates poor prognosis in breast cancer (BC) patients, while the mechanism by which RING1 is involved in BC progression is not fully understood. Here, we found that RING1 was lowly expressed in BC tissues and cells than in normal mammary tissues and epithelial cells. Overexpression of RING1 suppressed the cell proliferative and colony formation abilities, and facilitated cell cycle arrest and cell apoptosis in BC cells (T47D and MCF-7 cells). Mechanistically, as an ubiquitin ligase, RING1 bound to HSF1 and induced its proteasome-dependent degradation. HSF1 could bind to the promoter region of MT2A to promote the transcriptional level of MT2A. While RING1 overexpression hindered the transcriptional activation of MT2A induced by HSF1. Moreover, ectopic expression of MT2A reversed the inhibitory effect of RING1 on cell proliferation and clonogenesis, and antagonized the promotion effect of RING1 on cell cycle arrest and apoptosis in BC cells. Additionally, T47D cells infected with or without lentivirus-mediated RING1 overexpression vector (LV-RING1) were injected subcutaneously into the right back of nude mice to evaluate tumorigenicity. And overexpression of RING1 impeded the growth of BC xenografts in mice. In conclusion, RING1 suppressed the transcriptional activation of MT2A induced by HSF1 by facilitating the ubiquitination degradation of HSF1, resulting in cell cycle arrest and apoptosis in BC cells.
Insights
Lowly expressed RING1 in breast cancer (BC) suppresses tumor growth by degrading HSF1, inhibiting MT2A transcription, and promoting cell cycle arrest and apoptosis.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Low RING1 expression correlates with poor prognosis in breast cancer (BC) patients.
- The precise mechanisms of RING1's role in BC progression remain unclear.
Purpose of the Study:
- To elucidate the mechanism by which RING1 influences breast cancer progression.
- To investigate the functional role of RING1 in BC cell behavior and tumorigenicity.
Main Methods:
- Quantitative analysis of RING1 expression in BC tissues and cells.
- Overexpression studies of RING1 in BC cell lines (T47D, MCF-7).
- Investigation of RING1's interaction with HSF1 and its effect on MT2A transcription.
- Xenograft mouse models to assess tumorigenicity.
Main Results:
- RING1 was found to be lowly expressed in BC tissues and cells.
- Overexpression of RING1 inhibited BC cell proliferation, colony formation, and promoted cell cycle arrest and apoptosis.
- RING1 facilitated the proteasome-dependent degradation of HSF1, thereby hindering HSF1-mediated MT2A transcription.
- Ectopic expression of MT2A counteracted the inhibitory effects of RING1.
- RING1 overexpression impeded BC xenograft tumor growth in mice.
Conclusions:
- RING1 suppresses breast cancer progression by targeting HSF1 for degradation, which subsequently inhibits MT2A transcription.
- This mechanism leads to cell cycle arrest and apoptosis, ultimately impeding tumor growth.
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