首页> 外文期刊>Hepatology: Official Journal of the American Association for the Study of Liver Diseases >Hepatic CREBZF couples insulin to lipogenesis by inhibiting insig activity and contributes to hepatic steatosis in diet‐induced insulin‐resistant mice
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Hepatic CREBZF couples insulin to lipogenesis by inhibiting insig activity and contributes to hepatic steatosis in diet‐induced insulin‐resistant mice

机译:肝Crebzf通过抑制Insig活性将胰岛素致其脂肪生成,并有助于饮食诱导的胰岛素抗性小鼠中的肝脏脂肪变性

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摘要

Insulin is critical for the regulation of de novo fatty acid synthesis, which converts glucose to lipid in the liver. However, how insulin signals are transduced into the cell and then regulate lipogenesis remains to be fully understood. Here, we identified CREB/ATF bZIP transcription factor (CREBZF) of the activating transcription factor/cAMP response element‐binding protein (ATF/CREB) gene family as a key regulator for lipogenesis through insulin‐Akt signaling. Insulin‐induced gene 2a (Insig‐2a) decreases during refeeding, allowing sterol regulatory element binding protein 1c to be processed to promote lipogenesis; but the mechanism of reduction is unknown. We show that Insig‐2a inhibition is mediated by insulin‐induced CREBZF. CREBZF directly inhibits transcription of Insig‐2a through association with activating transcription factor 4. Liver‐specific knockout of CREBZF causes an induction of Insig‐2a and Insig‐1 and resulted in repressed lipogenic program in the liver of mice during refeeding or upon treatment with streptozotocin and insulin. Moreover, hepatic CREBZF deficiency attenuates hepatic steatosis in high‐fat, high‐sucrose diet–fed mice. Importantly, expression levels of CREBZF are increased in livers of diet‐induced insulin resistance or genetically obese ob/ob mice and humans with hepatic steatosis, which may underscore the potential role of CREBZF in the development of sustained lipogenesis in the liver under selective insulin resistance conditions. Conclusion : These findings uncover an unexpected mechanism that couples changes in extracellular hormonal signals to hepatic lipid homeostasis; disrupting CREBZF function may have the therapeutic potential for treating fatty liver disease and insulin resistance. (H epatology 2018).
机译:胰岛素对于调节De Novo脂肪酸合成至关重要,这将葡萄糖转化为肝脏脂质。然而,如何将胰岛素信号转导入细胞中,然后调节脂肪生成仍然是完全理解的。在此,我们将活化转录因子/阵营响应元件结合蛋白(ATF / CREB)基因系列的CREB ​​/ ATF BZIP转录因子(CREBZF)通过胰岛素-AKT信号传导作为脂肪生成的关键调节剂。胰岛素诱导的基因2a(Insig-2a)在改进过程中降低,使得甾醇调节元素结合蛋白1c被加工以促进脂肪生成;但减少机制是未知的。我们表明Insig-2a抑制由胰岛素诱导的Crebzf介导。 CrebzF通过与激活转录因子4的关联直接抑制Insig-2a的转录。肝脏特异性敲除CrebzF导致insig-2a和Insig-1的诱导,并导致在再生或在治疗后的小鼠肝脏中抑制脂肪切入程序链脲佐菌素和胰岛素。此外,肝Crebzf缺乏症在高脂肪,高蔗糖饮食喂食小鼠中衰减肝脏脂肪变性。重要的是,CREBZF的表达水平在饮食诱导的胰岛素抵抗肝脏或遗传肥胖的OB / OB小鼠和人类中,具有肝脏脂肪变性,这可能强调Crebzf在选择性胰岛素抵抗下肝脏持续脂肪生成的潜在作用状况。结论:这些研究结果发现了一种意外的机制,使细胞外激素信号变化到肝脂质稳态;破坏Crebzf功能可能具有治疗脂肪肝疾病和胰岛素抵抗的治疗潜力。 (2018年Hopatology)。

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    CAS Key Laboratory of Nutrition and Metabolism Institute for Nutritional Sciences Shanghai;

    CAS Key Laboratory of Nutrition and Metabolism Institute for Nutritional Sciences Shanghai;

    College of Life Sciences and OceanographyShenzhen UniversityShenzhen Guangdong China;

    CAS Key Laboratory of Nutrition and Metabolism Institute for Nutritional Sciences Shanghai;

    CAS Key Laboratory of Nutrition and Metabolism Institute for Nutritional Sciences Shanghai;

    CAS Key Laboratory of Nutrition and Metabolism Institute for Nutritional Sciences Shanghai;

    CAS Key Laboratory of Nutrition and Metabolism Institute for Nutritional Sciences Shanghai;

    CAS Key Laboratory of Nutrition and Metabolism Institute for Nutritional Sciences Shanghai;

    CAS Key Laboratory of Nutrition and Metabolism Institute for Nutritional Sciences Shanghai;

    CAS Key Laboratory of Nutrition and Metabolism Institute for Nutritional Sciences Shanghai;

    Department of Endocrinology and Metabolism Zhongshan HospitalFudan UniversityShanghai China;

    Department of Pathology and PathophysiologyZhejiang University School of MedicineHangzhou Zhejiang;

    Metabolic and Bariatric Surgery of Department of General Surgery Zhongshan HospitalFudan;

    Key Laboratory of Molecular Virology and Immunology Institut Pasteur of ShanghaiChinese Academy of;

    Pediatric Research Institute at the Department of Pediatrics Wendy L. Novak Diabetes Care;

    College of Life Sciences and OceanographyShenzhen UniversityShenzhen Guangdong China;

    CAS Key Laboratory of Nutrition and Metabolism Institute for Nutritional Sciences Shanghai;

    Department of Endocrinology and Metabolism Zhongshan HospitalFudan UniversityShanghai China;

    State Key Laboratory of Pharmaceutical BiotechnologyThe University of Hong KongHong Kong China;

    CAS Key Laboratory of Nutrition and Metabolism Institute for Nutritional Sciences Shanghai;

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  • 正文语种 eng
  • 中图分类 消化系及腹部疾病;
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