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Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
miR-4537 curtails ferroptosis by targeting MIOX in renal cell carcinoma
Hui Li1, Mengyu Fu1, Lingli Wang1
1Department of Laboratory Medicine, the Third Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan, China; Zhengzhou Key Laboratory for In Vitro Diagnosis of Hypertensive Disorders of Pregnancy, Zhengzhou, Henan, China.
Abstract:
Ferroptosis, an iron-dependent mode of cell death, has gained prominence for its critical role in the advancement of various cancers, notably clear cell renal carcinoma (ccRCC). The intricacies of ferroptosis's involvement in ccRCC, however, remain largely undefined. This study aimed to dissect the contribution of ferroptosis to ccRCC by examining differentially expressed genes (DEGs) identified within the TCGA ccRCC database and ferroptosis driver genes catalogued in the FerrDb database (dedicates to ferroptosis regulators and ferroptosis-disease associations). We employed 786-O and ACHN ccRCC cell lines, alongside HK2 (human kidey-2) cells and HKC (human kidney cells), to confirm the expression of 9 shared genes. Among these, MIOX (myo-inositol oxygenase) emerged as significantly downregulated in ccRCC cells compared to HK2 and HKC cells. Subsequent survival analysis illuminated a positive correlation between MIOX expression and improved patient survival, underscoring its prognostic significance. Further investigations into MIOX regulation identified four miRNAs via TargetScan predictions, with miR-4537 significantly upregulated in ccRCC cell lines. Functional assays involving miR-4537 mimics and inhibitors, combined with ferroptosis inducers and inhibitors, elucidated its impact on ccRCC cell growth and ferroptosis modulation. The results revealed that miR-4537 expression was diminished following ferroptosis induction, and the miR-4537 inhibitor markedly curbing ccRCC cell proliferation by fostering ferroptosis, while the mimic exerted opposite effects. Mechanistically, miR-4537 targets the 3'-UTR of MIOX to manipulate its expression, ultimately inhibiting ferroptosis in ccRCC cells. Our research indicated that miR-4537 restrained ferroptosis by regulating MIOX in ccRCC, offering novel insights into the mechanisms of ferroptosis in cancer biology and highlighting latent therapeutic avenues for cancer treatment through ferroptosis modulation.
Insights
Ferroptosis, a cell death process, is key in clear cell renal cell carcinoma (ccRCC). This study found miR-4537 inhibits ferroptosis by downregulating MIOX, suggesting new ccRCC treatment strategies.
Area of Science:
- Oncology
- Cell Death Mechanisms
- Molecular Biology
Background:
- Ferroptosis, an iron-dependent cell death, plays a role in clear cell renal cell carcinoma (ccRCC) progression.
- The specific mechanisms of ferroptosis in ccRCC remain unclear, necessitating further investigation.
Purpose of the Study:
- To investigate the role and regulatory mechanisms of ferroptosis in ccRCC.
- To identify key genes and microRNAs involved in ferroptosis modulation within ccRCC.
Main Methods:
- Analysis of differentially expressed genes (DEGs) in TCGA ccRCC database and ferroptosis driver genes from FerrDb.
- Validation of gene expression in ccRCC cell lines (786-O, ACHN) and normal kidney cells (HK2, HKC).
- Functional assays using miRNA mimics/inhibitors and ferroptosis inducers/inhibitors to assess miR-4537 and MIOX roles.
Main Results:
- MIOX (myo-inositol oxygenase) was significantly downregulated in ccRCC cells and associated with better patient survival.
- miR-4537 was upregulated in ccRCC and found to target MIOX, inhibiting ferroptosis.
- Inhibition of miR-4537 promoted ferroptosis and suppressed ccRCC cell proliferation.
Conclusions:
- miR-4537 restrains ferroptosis in ccRCC by downregulating MIOX.
- This regulatory axis presents a potential therapeutic target for ccRCC treatment.
- Understanding ferroptosis modulation offers novel strategies for cancer therapy.
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