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Insulin-induced gene 2 protects against hepatic ischemia–reperfusion injury via metabolic remodeling

肝损伤 再灌注损伤 磷酸戊糖途径 炎症 化学 细胞生物学 生物 医学 药理学 糖酵解 生物化学 内科学 免疫学 缺血 新陈代谢
作者
Yichao Wu,Changbiao Li,Abid Khan,Kangchen Chen,Renyi Su,Shengjun Xu,Yiyang Sun,Fengqiang Gao,Kai Wang,Xiao‐Dong Wang,Zhengxing Lian,Shuo Wang,Mengyuan Yu,Xin Hu,Fan Yang,Shusen Zheng,Nasha Qiu,Zhikun Liu,Xiao Xu
出处
期刊:Journal of Translational Medicine [BioMed Central]
卷期号:21 (1) 被引量:3
标识
DOI:10.1186/s12967-023-04564-y
摘要

Hepatic ischemia-reperfusion (IR) injury is the primary reason for complications following hepatectomy and liver transplantation (LT). Insulin-induced gene 2 (Insig2) is one of several proteins that anchor the reticulum in the cytoplasm and is essential for metabolism and inflammatory responses. However, its function in IR injury remains ambiguous.Insig2 global knock-out (KO) mice and mice with adeno-associated-virus8 (AAV8)-delivered Insig2 hepatocyte-specific overexpression were subjected to a 70% hepatic IR model. Liver injury was assessed by monitoring hepatic histology, inflammatory responses, and apoptosis. Hypoxia/reoxygenation stimulation (H/R) of primary hepatocytes and hypoxia model induced by cobalt chloride (CoCl2) were used for in vitro experiments. Multi-omics analysis of transcriptomics, proteomics, and metabolomics was used to investigate the molecular mechanisms underlying Insig2.Hepatic Insig2 expression was significantly reduced in clinical samples undergoing LT and the mouse IR model. Our findings showed that Insig2 depletion significantly aggravated IR-induced hepatic inflammation, cell death and injury, whereas Insig2 overexpression caused the opposite phenotypes. The results of in vitro H/R experiments were consistent with those in vivo. Mechanistically, multi-omics analysis revealed that Insig2 is associated with increased antioxidant pentose phosphate pathway (PPP) activity. The inhibition of glucose-6-phosphate-dehydrogenase (G6PD), a rate-limiting enzyme of PPP, rescued the protective effect of Insig2 overexpression, exacerbating liver injury. Finally, our findings indicated that mouse IR injury could be attenuated by developing a nanoparticle delivery system that enables liver-targeted delivery of substrate of PPP (glucose 6-phosphate).Insig2 has a protective function in liver IR by upregulating the PPP activity and remodeling glucose metabolism. The supplementary glucose 6-phosphate (G6P) salt may serve as a viable therapeutic target for alleviating hepatic IR.

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