Metabolic Dysregulation of 27-Hydroxycholesterol Sensitizes Proximal Tubular Epithelial Cells to Ferroptosis in Ischemic Acute Kidney Injury

急性肾损伤 程序性细胞死亡 转录组 医学 细胞凋亡 近曲小管 缺血性损伤 细胞 内科学 自噬 细胞生物学 内分泌学 癌症研究 受体 下调和上调 代谢组学 HMOX1型 重编程 病理 缺血 内生 生物 发病机制 机制(生物学) 探地雷达 细胞损伤 氧化应激 细胞损伤
作者
Yilin Zhang,X Li,Tao‐Tao Tang,Qin Yang,Bo Wang,Zuo-Lin Li,Yi Wen,Qiuli Wu,Lin-Li Lv,Feng Ye,Xiong Z. Ruan,John Cijiang He,Bin Wang,Zuo‐Lin Li
出处
期刊:Journal of The American Society of Nephrology 卷期号:37 (3): 445-459 被引量:2
标识
DOI:10.1681/asn.0000000857
摘要

Key Points Integrated single-cell spatial transcriptomics and metabolomics identified cholesterol reprogramming as a driver of ferroptosis in proximal tubules. Targeting the Cyp7b1/27-hydroxycholesterol axis efficiently alleviated ferroptosis-induced proximal tubule injury during ischemic AKI. Background Cell death plays a pivotal role in ischemic AKI, with metabolic dysfunction emerging as a key contributor. However, the mechanism by which metabolism imbalance initiates renal tubular cell death is poorly understood. Methods We combined single-cell spatial transcriptomics and metabolomics to characterize the function and metabolites of murine renal proximal cell subpopulations during ischemic AKI to CKD transition. Results Ferroptosis was identified as the predominant mode of cell death in severely injured proximal straight tubules after AKI. Additional investigation revealed a critical deficiency in Cyp7b1, an enzyme responsible for metabolizing 27-hydroxycholesterol (27-HC) into 7 α ,27-dihydroxycholesterol, resulting in substantial 27-HC accumulation in proximal tubular cells during the early phase of ischemic AKI. Mechanistically, 27-HC acts as an endogenous ligand for estrogen receptor α , inducing downstream Hmox1 activation and thereby potentiating ferroptosis susceptibility in proximal tubular cells. Notably, adeno-associated virus–mediated Cyp7b1 overexpression in a murine ischemia-reperfusion injury model attenuated ferroptosis by enhancing 27-HC degradation, effectively mitigating ischemic AKI progression. These findings underscore the pivotal role of the Cyp7b1/27-HC axis in this pathologic context. Conclusions Our study delineated a unique mechanism of Cyp7b1/27-HC axis in proximal tubular cell ferroptosis in early AKI.
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