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Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
MAT2A inhibits the ferroptosis in osteosarcoma progression regulated by miR-26b-5p
Shuchi Xia1, Yun Liang2, Yuqing Shen1
1Department of Dentistry, Zhongshan Hospital Fudan University, Shanghai 200032, China.
Abstract:
Osteosarcoma (OS) is the most frequent primary malignant bone tumor. Ferroptosis, a form of regulated cell death, is a key tumor suppression mechanism. Although methionine adenosyltransferase II alpha (MAT2A) has been reported to inhibit several tumor cells, it is unclear whether inhibition of MAT2A in OS cells can reduce ferroptosis. CCK-8, flow cytometry, and Transwell assays were performed to evaluate cell viability, cell apoptosis/cycle, and cell migration, respectively. The levels of ferrous iron and glutathione (GSH) levels in cells were measured to evaluate the degree of cell ferroptosis. Western blot analysis was performed to detect protein levels of MAT2A, p-STAT3 (Ser727)/STAT3, and solute carrier family 7 member 11 (SLC7A11) in OS cells. MAT2A was significantly upregulated in OS specimens and high MAT2A expression was associated with a poorer prognosis in OS patients. shRNA targeting MAT2A significantly increased OS cell apoptosis, triggered cell cycle arrest in the G2 phase, and attenuated migration ability in vitro. MAT2A depletion dramatically inhibited tumor progression of OS in vivo. Overexpression of MAT2A rescued the tumor inhibition caused by miR-26b-5p. MAT2A knockdown promoted OS cell ferroptosis. miR-26b-5p/MAT2A regulates tumor malignant progression and OS cell ferroptosis by controlling p-STAT3 and SLC7A11 expressions. Taken together, our study displayed that miR-26b-5p/MAT2A triggers ferroptosis in OS cells by increasing intracellular ferrous iron levels and inhibiting the STAT3/SLC7A11 axis. Our results reveal a MAT2A-mediated ferroptosis defense mechanism used by OS cells and propose a potential ferroptosis-inducing strategy for the treatment of OS patients.
Insights
Inhibition of methionine adenosyltransferase II alpha (MAT2A) triggers ferroptosis in osteosarcoma (OS) cells by impacting the STAT3/SLC7A11 pathway. This uncovers a MAT2A-mediated defense mechanism and suggests a novel ferroptosis-inducing treatment strategy for OS.
Area of Science:
- Oncology
- Cell Death Research
- Molecular Biology
Background:
- Osteosarcoma (OS) is the most common primary malignant bone tumor.
- Ferroptosis, a regulated cell death, is crucial for tumor suppression.
- The role of methionine adenosyltransferase II alpha (MAT2A) in OS ferroptosis remains unclear.
Purpose of the Study:
- To investigate the role of MAT2A in osteosarcoma (OS) cell ferroptosis.
- To explore the regulatory mechanism of MAT2A in OS progression.
- To evaluate MAT2A as a potential therapeutic target for OS.
Main Methods:
- Cell viability, apoptosis, cell cycle, and migration assays (CCK-8, flow cytometry, Transwell).
- Measurement of intracellular ferrous iron and glutathione (GSH) levels.
- Western blot analysis for MAT2A, p-STAT3/STAT3, and SLC7A11 protein expression.
- In vivo tumor progression studies and shRNA-mediated MAT2A knockdown.
Main Results:
- MAT2A was upregulated in OS specimens and associated with poor prognosis.
- MAT2A knockdown increased OS cell apoptosis, induced G2 cell cycle arrest, and reduced migration.
- MAT2A depletion inhibited OS tumor growth in vivo and promoted ferroptosis.
- The miR-26b-5p/MAT2A axis regulates OS progression and ferroptosis via the STAT3/SLC7A11 pathway.
Conclusions:
- MAT2A promotes OS progression and inhibits ferroptosis.
- MAT2A knockdown induces OS cell ferroptosis by increasing ferrous iron and inhibiting the STAT3/SLC7A11 axis.
- Targeting MAT2A represents a potential ferroptosis-inducing therapeutic strategy for osteosarcoma.
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