急性肾损伤
活性氧
肾
化学
花生四烯酸
脂质运载蛋白
多不饱和脂肪酸
再生(生物学)
癌症研究
细胞生物学
生物化学
脂肪酸
生物
医学
内科学
内分泌学
酶
作者
Lili Huang,Ling Zhang,Zheng Zhang,Fangyan Tan,Yixin Ma,Xujia Zeng,Dan Cao,Lili Deng,Qi Liu,Hang Sun,Bingbing Shen,Xiaohui Liao
摘要
Abstract Ferroptosis, characterized by lipid accumulation in intracellular compartments, is related to acute kidney injury (AKI), but the mechanism remains obscure. In our previous study, the protective effect of augmenter of liver regeneration (ALR) on AKI was not fully clarified. In this study, we established an AKI mouse model by knocking out proximal tubule‐specific ALR and an AKI cell model by inducing hypoxia, as well as enrolled AKI patients, to investigate the effects of ALR on ferroptosis and the progression of AKI. We found that ALR knockout aggravated ferroptosis and increased ROS accumulation and mitochondrial damage, whereas ALR overexpression attenuated ferroptosis through clearance of ROS and maintenance of mitochondrial morphology. Mechanistically, we demonstrated that ALR could directly bind to long‐chain‐fatty‐acid‐CoA ligase 4 (ACSL4) and further inhibit the expression of ACSL4 by interacting with certain regions. By resolution liquid chromatography coupled with triple quadruple mass spectrometry, we found that ALR could reduce the contents of polyunsaturated fatty acids, especially arachidonic acid. In addition, we showed that ALR binds to ACSL4 and attenuates oxylipin accumulation, exerting a protective effect against ferroptosis in AKI. Therefore, targeting renal ALR can attenuate ferroptosis and can offer a promising strategy for the treatment of AKI.
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