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Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
Central role of Sigma-1 receptor in ochratoxin A-induced ferroptosis
Wenying Chen1,2, Lingyun Han1, Ruiran Yang1
1School of Public Health, Zunyi Medical University, No.1 Campus Road, Xinpu District, Zunyi, 563000, Guizhou, People's Republic of China.
Abstract:
Ochratoxin A (OTA), a secondary fungal metabolite known for its nephrotoxic effects, is prevalent in various feeds and food items. Our recent study suggests that OTA-induced nephrotoxicity is linked to the Sigma-1 receptor (Sig-1R)-mediated mitochondrial pathway apoptosis in human proximal tubule epithelial-originated kidney-2 (HK-2) cells. However, the contribution of Sig-1R to OTA-induced nephrotoxicity involving other forms of regulated cell death, such as ferroptosis, remains unexplored. In this investigation, cell viability, malondialdehyde (MDA) levels, glutathione (GSH) levels, and protein expressions in HK-2 cells treated with OTA and/or Ferrostatin-1/blarcamesine hydrochloride/BD1063 dihydrochloride were assessed. The results indicate that a 24 h-treatment with 1 μM OTA significantly induces ferroptosis by inhibiting Sig-1R, subsequently promoting nuclear receptor coactivator 4 (NCOA4), long-chain fatty acid-CoA ligase 4 (ACSL4), arachidonate 5-lipoxygenase (ALOX5), autophagy protein 5 (ATG5), and ATG7, inhibiting ferritin heavy chain (FTH1), solute carrier family 7 member 11 (SLC7A11/xCT), glutathione peroxidase 4 (GPX4), peroxiredoxin 6 (PRDX6), and ferroptosis suppressor protein 1 (FSP1), reducing GSH levels, and increasing MDA levels (P < 0.05). In conclusion, OTA induces ferroptosis by inhibiting Sig-1R, subsequently promoting ferritinophagy, inhibiting GPX4/FSP1 antioxidant systems, reducing GSH levels, and ultimately increasing lipid peroxidation levels in vitro.
Insights
Ochratoxin A (OTA) induces kidney cell death via ferroptosis by inhibiting the Sigma-1 receptor (Sig-1R). This pathway involves reduced glutathione and increased lipid peroxidation, highlighting a novel mechanism in OTA nephrotoxicity.
Area of Science:
- Toxicology
- Cell Biology
- Biochemistry
Background:
- Ochratoxin A (OTA) is a nephrotoxic fungal metabolite found in food and feed.
- Previous research linked OTA-induced kidney cell apoptosis to the Sigma-1 receptor (Sig-1R) and mitochondrial pathways.
- The role of Sig-1R in OTA-induced ferroptosis remained uninvestigated.
Purpose of the Study:
- To investigate the contribution of Sig-1R to Ochratoxin A-induced ferroptosis in kidney cells.
- To elucidate the molecular mechanisms underlying OTA-induced ferroptosis mediated by Sig-1R.
Main Methods:
- Human proximal tubule epithelial cells (HK-2) were treated with OTA and/or ferroptosis inhibitors.
- Assessed cell viability, malondialdehyde (MDA) levels, and glutathione (GSH) levels.
- Analyzed protein expression related to ferroptosis, autophagy, and antioxidant systems.
Main Results:
- OTA (1 μM, 24h) significantly induced ferroptosis in HK-2 cells.
- OTA inhibited Sig-1R, leading to increased NCOA4, ACSL4, ALOX5, ATG5, and ATG7.
- OTA decreased FTH1, SLC7A11/xCT, GPX4, PRDX6, FSP1, GSH levels, and increased MDA levels.
Conclusions:
- Ochratoxin A induces ferroptosis by inhibiting Sig-1R in kidney cells.
- This inhibition promotes ferritinophagy and impairs GPX4/FSP1 antioxidant systems.
- The process results in reduced GSH and elevated lipid peroxidation, contributing to in vitro nephrotoxicity.
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