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首页> 外文期刊>Scientific reports. >CHIP?/?-Mouse Liver: Adiponectin-AMPK-FOXO-Activation Overrides CYP2E1-Elicited JNK1-Activation, Delaying Onset of NASH: Therapeutic Implications
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CHIP?/?-Mouse Liver: Adiponectin-AMPK-FOXO-Activation Overrides CYP2E1-Elicited JNK1-Activation, Delaying Onset of NASH: Therapeutic Implications

机译:CHIP?/?-小鼠肝:脂联素-AMPK-FOXO激活可替代CYP2E1激活的JNK1激活,延迟NASH的发作:治疗意义

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Genetic ablation of C-terminus of Hsc70-interacting protein (CHIP) E3 ubiquitin-ligase impairs hepatic cytochrome P450 CYP2E1 degradation. Consequent CYP2E1 gain of function accelerates reactive O2 species (ROS) production, triggering oxidative/proteotoxic stress associated with sustained activation of c-Jun NH2-terminal kinase (JNK)-signaling cascades, pro-inflammatory effectors/cytokines, insulin resistance, progressive hepatocellular ballooning and microvesicular steatosis. Despite this, little evidence of nonalcoholic fatty liver disease (NAFLD)onalcoholic steatohepatitis (NASH) was found in CHIP(-/-)-mice over the first 8-9-months of life. We herein document that this lack of tissue injury is largely due to the concurrent up-regulation and/or activation of the adiponectin-5'-AMP-activated protein kinase (AMPK)-forkhead box O (FOXO)-signaling axis stemming from at the least three synergistic features: Up-regulated expression of adipose tissue adiponectin and its hepatic adipoR1/adipoR2 receptors, stabilization of hepatic AMPKα1-isoform, identified herein for the first time as a CHIP-ubiquitination substrate (unlike its AMPKα2-isoform), as well as nuclear stabilization of FOXOs, well-known CHIP-ubiquitination targets. Such beneficial predominance of the adiponectin-AMPK-FOXO-signaling axis over the sustained JNK-elevation and injurious insulin resistance in CHIP(-/-)-livers apparently counteracts/delays rapid progression of the hepatic microvesicular steatosis to the characteristic macrovesicular steatosis observed in clinical NASH and/or rodent NASH-models.
机译:Hsc70相互作用蛋白(CHIP)E3泛素连接酶C末端的遗传消融损害肝细胞色素P450 CYP2E1的降解。随之而来的CYP2E1功能获得加速了反应性O2物种(ROS)的产生,触发了与c-Jun NH2末端激酶(JNK)持续激活相关的氧化/蛋白毒性信号-信号级联,促炎性效应子/细胞因子,胰岛素抵抗,进行性肝细胞气球膨胀和微囊脂肪变性。尽管如此,在生命的前8到9个月中,在CHIP(-/-)小鼠中几乎没有发现非酒精性脂肪肝疾病(NAFLD)/非酒精性脂肪性肝炎(NASH)的证据。我们在本文中记录到这种组织损伤的缺乏主要是由于脂联素5'-AMP激活的蛋白激酶(AMPK)-叉头盒O(FOXO)-信号转导轴同时发生于上调和/或激活至少三个协同特征:脂肪组织脂联素及其肝adipoR1 / adipoR2受体的表达上调,肝AMPKα1-同工型的稳定化,首次在本文中被鉴定为CHIP泛素化底物(与AMPKα2-同工型不同)以及众所周知的CHIP泛素化目标FOXO的核稳定性。脂联素-AMPK-FOXO信号转导轴在CHIP(-/-)-肝脏中持续的JNK升高和有害的胰岛素抵抗方面的这种有益优势显然抵消了/延迟了肝微囊性脂肪变性迅速发展为特征性大囊性脂肪变性。临床NASH和/或啮齿动物NASH模型。

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