Genetic and pharmacological inhibition of GRPR protects against acute kidney injury via attenuating renal inflammation and necroptosis

通过基因和药理学抑制 GRPR 可减轻肾脏炎症和坏死性凋亡,从而防止急性肾损伤

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作者:Chao Li, Qiu-Ying Ma, Xue-Qi Liu, Hai-di Li, Ming-Jun Yu, Shuai-Shuai Xie, Wen-Xian Ma, Ying Chen, Jia-Nan Wang, Ruo-Bing He, He-Ge Bian, Yuan He, Li Gao, Sheng-Song Deng, Hong-Mei Zang, Qian Gong, Jia-Gen Wen, Ming-Ming Liu, Chen Yang, Hai-Yong Chen, Jun Li, Hui-Yao Lan, Juan Jin, Ri-Sheng Yao, Xia

Abstract

Gastrin-releasing peptide (GRP) binds to its receptor (GRP receptor [GRPR]) to regulate multiple biological processes, but the function of GRP/GRPR axis in acute kidney injury (AKI) remains unknown. In the present study, GRPR is highly expressed by tubular epithelial cells (TECs) in patients or mice with AKI, while histone deacetylase 8 may lead to the transcriptional activation of GRPR. Functionally, we uncovered that GRPR was pathogenic in AKI, as genetic deletion of GRPR was able to protect mice from cisplatin- and ischemia-induced AKI. This was further confirmed by specifically deleting the GRPR gene from TECs in GRPRFlox/Flox//KspCre mice. Mechanistically, we uncovered that GRPR was able to interact with Toll-like receptor 4 to activate STAT1 that bound the promoter of MLKL and CCL2 to induce TEC necroptosis, necroinflammation, and macrophages recruitment. This was further confirmed by overexpressing STAT1 to restore renal injury in GRPRFlox/Flox/KspCre mice. Concurrently, STAT1 induced GRP synthesis to enforce the GRP/GRPR/STAT1 positive feedback loop. Importantly, targeting GRPR by lentivirus-packaged small hairpin RNA or by treatment with a novel GRPR antagonist RH-1402 was able to inhibit cisplatin-induced AKI. In conclusion, GRPR is pathogenic in AKI and mediates AKI via the STAT1-dependent mechanism. Thus, targeting GRPR may be a novel therapeutic strategy for AKI.

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