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首页> 外文期刊>Archives of Toxicology >Inverse agonist of ERRγ reduces cannabinoid receptor type 1-mediated induction of fibrinogen synthesis in mice with a high-fat diet-intoxicated liver
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Inverse agonist of ERRγ reduces cannabinoid receptor type 1-mediated induction of fibrinogen synthesis in mice with a high-fat diet-intoxicated liver

机译:ERRγ的反向激动剂减少了大麻素受体型1介导的纤维蛋白原合成诱导小鼠中的纤维蛋白原合成,具有高脂饮食陶醉的肝脏

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摘要

Upon liver intoxication with malnutrition or high-fat diet feeding, fibrinogen is synthesized by hepatocytes and secreted into the blood in human and mouse. Its primary function is to occlude blood vessels upon damage and thereby stop excessive bleeding. High fibrinogen levels may contribute to the development of pathological thrombosis, which is one mechanism linking fatty liver disease with cardiovascular disease. Our previous results present ERRγ as key regulator of hepatocytic fibrinogen gene expression in human. In a therapeutic approach, we now tested ERRγ inverse agonist GSK5182 as regulator of fibrinogen levels in mouse hyperfibrinogenemia caused by diet-induced obesity and in mouse hepatocytes. ACEA, a CB1R agonist, up-regulated transcription of mouse fibrinogen via induction of ERRγ, whereas knockdown of ERRγ attenuated the effect of ACEA (10?μM) on fibrinogen expression in AML12 mouse hepatocytes. Deletion analyses of the mouse fibrinogen γ (FGG) gene promoter and ChIP assays revealed binding sites for ERRγ on the mouse FGG promoter. ACEA or adenovirus ERRγ injection induced FGA, FGB and FGG mRNA and protein expression in mouse liver, while ERRγ knockdown with Ad-shERRγ attenuated ACEA-mediated induction of fibrinogen gene expression. Moreover, mice maintained on a high-fat diet (HFD) expressed higher levels of fibrinogen, whereas cannabinoid receptor type 1 (CB1R)-KO mice fed an HFD had nearly normal fibrinogen levels. Finally, GSK5182 (40?mg/kg) strongly inhibits the ACEA (10?mg/kg) or HFD-mediated induction of fibrinogen level in mice. Taken together, targeting ERRγ with its inverse agonist GSK5182 represents a promising therapeutic strategy for ameliorating hyperfibrinogenemia.
机译:在肝脏中毒时用营养不良或高脂饮食喂养,纤维蛋白原由肝细胞合成并分泌到人和小鼠中的血液中。其主要功能是堵塞血管损坏,从而停止过度出血。高纤维蛋白原水平可能有助于发育病理血栓形成,这是一种与心血管疾病联系起来的一种机制。我们以前的结果将Errγ作为人类肝细胞纤维蛋白原基因表达的关键调节器。在治疗方法中,我们现在测试了Errγ逆激动剂GSK5182作为由饮食诱导的肥胖症和小鼠肝细胞引起的小鼠高凝血血症纤维蛋白原水平的调节剂。 ACEA,CB1R激动剂,通过诱导错误γ诱导小鼠纤维蛋白原的上调转录,而ERRγ的敲低抑制了ACEA(10≤μm)对AML12小鼠肝细胞中纤维蛋白原表达的影响。小鼠纤维蛋白原γ(FGG)基因启动子和芯片测定的缺失分析显示出在小鼠FGG启动子上的错误γ结合位点。 ACEA或腺病毒ERRγ注射诱导的FGA,FGB和FGG mRNA和蛋白质在小鼠肝中的表达,而AD-SHERRγ的错误敲击抗血素介导的纤维蛋白原基因表达的诱导。此外,维持在高脂肪饮食(HFD)上的小鼠表达了较高水平的纤维蛋白原,而大麻素受体1(CB1R)-KO小鼠喂养HFD具有几乎正常的纤维蛋白原水平。最后,GSK5182(40×mg / kg)强烈地抑制了小鼠纤维蛋白原水平的ACEA(10?Mg / kg)或HFD介导的诱导。占据靶向逆激动剂GSK5182的靶向错误,代表了改善高纤维增生血症的有希望的治疗策略。

著录项

  • 来源
    《Archives of Toxicology》 |2018年第9期|共12页
  • 作者单位

    National Creative Research Initiatives Center for Nuclear Receptor Signals School of Biological;

    National Creative Research Initiatives Center for Nuclear Receptor Signals School of Biological;

    National Creative Research Initiatives Center for Nuclear Receptor Signals School of Biological;

    Korea Research Institute of Bioscience and Biotechnology;

    National Creative Research Initiatives Center for Nuclear Receptor Signals School of Biological;

    New Drug Development Center Daegu-Gyeongbuk Medical Innovation Foundation;

    Graduate School of Medical Science and Engineering Korea Advanced Institute of Science and;

    Department of Internal Medicine School of Medicine Kyungpook National University Kyungpook;

    New Drug Development Center Daegu-Gyeongbuk Medical Innovation Foundation;

    Department of Medicine II Medical Faculty Mannheim Heidelberg University;

    Korea Research Institute of Bioscience and Biotechnology;

    National Creative Research Initiatives Center for Nuclear Receptor Signals School of Biological;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 毒物学(毒理学);
  • 关键词

    Cannabinoid receptor; ERRγ; Fibrinogen; High-fat diet; Hyperfibrinogenemia; GSK5182;

    机译:大麻素受体;错误;纤维蛋白原;高脂饮食;高纤维蛋白原血症;GSK5182;

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