急性肾损伤
发病机制
膜联蛋白
肾
医学
癌症研究
基因剔除小鼠
基因沉默
泌尿系统
药理学
细胞
受体
程序性细胞死亡
肾脏疾病
细胞凋亡
细胞内
膜联蛋白A2
信号转导
膜联蛋白A1
足细胞
化学
近曲小管
内科学
膜联蛋白A5
下调和上调
内分泌学
细胞生物学
作者
Jiaxiao Li,Chen Wu,Yuqi Zhu,Zicheng Liu,Wenjuan Yu,Andrew Fanuel Lukwaro,Yu Zhong,Guoqiang Xie,Lili Zhou,XL. Huang,Hui-Yao Lan,J H Chen,Ying Tang
标识
DOI:10.1002/advs.202504356
摘要
Acute kidney injury (AKI) is a common cause of chronic kidney disease, but the underlying pathogenesis remains unclear, and treatment options are limited. Here we report that Annexin A13 (ANXA13), the founder member of Annexins, is renoprotective in AKI. Clinically, ANXA13 is lost in the kidneys of patients with AKI and in mice with ischemic-reperfusion injury (IRI)- or cisplatin-induced AKI. This was associated with reduced serum ANXA13 and elevated urinary ANXA13 levels in the patients. Functionally, ANXA13 overexpression protected against IRI- and cisplatin-induced AKI, whereas ANXA13 silencing promoted AKI. This was further confirmed in renal tubule epithelial cell-specific Anxa13 knockout mice, in which deletion of tubular Anxa13 significantly exacerbated IRI- and cisplatin-induced AKI. Mechanistically, ANXA13 directly binds to the TGF-β receptor type 1 intracellular domain and inhibits its phosphorylation. This inactivates Smad3 signaling and blocks Smad3-mediated tubular cell death via p21-dependent G1 cell cycle arrest. Furthermore, our findings revealed that ANXA13 was negatively regulated by TGF-β/Smad3 signaling, as Smad3 could bind to the 3'UTR of ANXA13 and inhibit its transcription, which was confirmed in Smad3 Knockout mice. In conclusion, ANXA13 is renoprotective in AKI and may be a novel therapeutic agent for AKI by targeting TGF-β/Smad3 signaling.
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