Author: Sui, Mingxing; Xu, Da; Zhao, Wenyu; Lu, Hanlan; Chen, Rui; Duan, Yazhe; Li, Yanhua; Zhu, Youhua; Zhang, Lei; Zeng, Li
Title: CIRBP promotes ferroptosis by interacting with ELAVL1 and activating ferritinophagy during renal ischaemiaâ€reperfusion injury Cord-id: 4mbi6v46 Document date: 2021_6_10
ID: 4mbi6v46
Snippet: Renal ischaemiaâ€reperfusion (IR) is a major cause of acute kidney injury (AKI). Coldâ€inducible RNAâ€binding protein (CIRBP) may contribute to AKI because its deficiency protects against renal IR injury in a mechanism believed to involve ferroptosis. We aimed to investigate whether ferroptosis is associated with CIRBPâ€mediated renal damage. The differential expression of CIRBP was examined in tubular epithelial (HK2) cells during hypoxiaâ€reoxygenation (HR) or in response to erastin, an i
Document: Renal ischaemiaâ€reperfusion (IR) is a major cause of acute kidney injury (AKI). Coldâ€inducible RNAâ€binding protein (CIRBP) may contribute to AKI because its deficiency protects against renal IR injury in a mechanism believed to involve ferroptosis. We aimed to investigate whether ferroptosis is associated with CIRBPâ€mediated renal damage. The differential expression of CIRBP was examined in tubular epithelial (HK2) cells during hypoxiaâ€reoxygenation (HR) or in response to erastin, an inducer of ferroptosis. CIRBP expression was increased in response to HR or erastin in HK2 cells but the silencing of CIRBP inhibited HR and erastinâ€induced ferroptosis together with ferritinophagy. We discovered an interaction between CIRBP and ELAVL1 using STRING software, which was verified through coâ€immunoprecipitation and fluorescence colocalization assays. We found that ELAVL1 is a critical regulator in the activation of ferritinophagy and the promotion of ferroptosis. HR or erastin also induced the expression of ELAVL1. An autophagy inhibitor (hydroxychloroquine) or siâ€ELAVL1 transfection reversed CIRBPâ€enhanced ferritinophagy activation and ferroptosis in HK2 cells under HR. Injection of antiâ€CIRBP antibody into a mouse model of IR inhibited ferroptosis and decreased renal IR injury in vivo. In summary, our results provide evidence that ferritinophagyâ€mediated ferroptosis could be responsible for CIRBPâ€enhanced renal IR injury.
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