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miR-127-5p Targets JAM3 to Regulate Ferroptosis, Proliferation, and Metastasis in Malignant Meningioma Cells.

AbstractObjective:
Meningiomas are one of the most common primary tumors of the central nervous system. Most of them are benign and can be cured by surgery, while a few meningiomas are malignant. Ferroptosis gene characteristics might be associated with drug therapy and survival in patients with clinically aggressive, unresectable meningiomas. This study explored the mechanism of differentially expressed miRNAs and ferroptosis in meningioma to provide a new reference to treat meningioma.
Methods:
Bioinformatics analysis of differential miRNA profiles and functions in patients with meningioma was performed. The contents of lactate dehydrogenase (LDH), malondialdehyde (MDA), and Fe2+ were determined. Reactive oxygen species (ROS) values, as well as cell cycle changes, were analyzed by flow cytometry. The targets of miR-127-5p and JAM3 were detected by dual luciferase assays. Cell counting kit-8 (CCK8) and Transwell assays were used to analyze cell activity. Ki67 expression was analyzed by immunohistochemistry. Expression levels of miR-127-5p and JAM3 were analyzed by RT-qPCR. GPX4 expression was quantified by western blotting.
Results:
miR-127-5p was expressed at low levels in IOMM-Lee cells, while JAM3 was highly expressed in IOMM-Lee cells. A dual luciferase assay demonstrated that miR-127-5p could target JAM3. Upregulation of miR-127-5p in IOMM-Lee cells resulted in cell cycle arrest and inhibition of cell activity. Upregulation of miR-127-5p increased LDH, MDA, and ROS levels and Fe2+ content and inhibited the expression of GPX4 protein. Upregulation of JAM3 reversed the results of miR-127-5p upregulation.
Conclusion:
miR-127-5p regulated meningioma formation and ferroptosis through JAM3, providing insights for the development of new treatments for meningioma.
AuthorsJing Zhang, Zang Liu, Yipeng Dong
JournalDisease markers (Dis Markers) Vol. 2022 Pg. 6423237 ( 2022) ISSN: 1875-8630 [Electronic] United States
PMID35818586 (Publication Type: Journal Article)
CopyrightCopyright © 2022 Jing Zhang et al.
Chemical References
  • Cell Adhesion Molecules
  • JAM3 protein, human
  • MIRN127 microRNA, human
  • MicroRNAs
  • Reactive Oxygen Species
Topics
  • Cell Adhesion Molecules (genetics)
  • Cell Line, Tumor
  • Cell Movement (genetics)
  • Cell Proliferation (genetics)
  • Ferroptosis (genetics)
  • Humans
  • Meningeal Neoplasms (genetics, metabolism)
  • Meningioma (metabolism)
  • MicroRNAs (genetics, metabolism)
  • Reactive Oxygen Species

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