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- Jian Dong, Meng-Yun Ke, Xiao-Ning Wu, Hong-Fan Ding, Li-Na Zhang, Feng Ma, Xue-Min Liu, Bo Wang, Jian-Lin Liu, Shao-Ying Lu, Rongqian Wu, Timothy M Pawlik, Yi Lyu, and Xu-Feng Zhang.
- Department of Hepatobiliary Surgery and Institute of Advanced Surgical Technology and Engineering, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, Shaanxi Province, China.
- Ann. Surg. 2022 Aug 1; 276 (2): 345-356.
ObjectivesTo identify the role and mechanism of a male specific gene, SRY, in I/R-induced hepatic injury.BackgroundMales are more vulnerable to I/R injury than females. However, the mechanism of these sex-based differences remains poorly defined.MethodsClinicopathologic data of patients who underwent hepatic resection were identified from an international multi-institutional database. Liver specific SRY TG mice were generated, and subjected to I/R insult with their littermate WT controls in vivo. In vitro experiments were performed by treating primary hepatocytes from TG and WT mice with hypoxia/reoxygen-ation stimulation.ResultsClinical data showed that postoperative aminotransferase level, incidence of overall morbidity and liver failure were markedly higher among 1267 male versus 508 female patients who underwent hepatic resection. SRY was dramatically upregulated during hepatic I/R injury. Overexpression of SRY in male TG mice and ectopic expression of SRY in female TG mice exacerbated liver I/R injury compared with WTs as manifested by increased inflammatory reaction, oxidative stress and cell death in vivo and in vitro. Mechanistically, SRY interacts with Glycogen synthase kinase-3β (GSK-3β) and β-catenin, and promotes phosphorylation and degradation of β-catenin, leading to suppression of the downstream FOXOs, and activation of NF-κBand TLR4 signaling. Furthermore, activation of β-catenin almost completely reversed the SRYoverexpression-mediated exacerbation of hepatic I/R damage.ConclusionsSRY is a novel hepatic I/R mediator that promotes hepatic inflammatory reaction, oxidative stress and cell necrosis via inhibiting Wnt/β-catenin signaling, which accounts for the sex-based disparity in hepatic I/R injuries.Copyright © 2020 Wolters Kluwer Health, Inc. All rights reserved.
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