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.

PubMed

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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