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Control of Adipose Tissue Inflammation Through TRB1

机译:通过TRB1控制脂肪组织炎症

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摘要

Objective-Based on its role as an energy storage compartment and endocrine organ, white adipose tissue (WAT) fulfills a critical function in the maintenance of whole-body energy homeostasis. Indeed, WAT dysfunction is connected to obesity-related type 2 diabetes triggered at least partly by an inflammatory response in adipocytes. The pseudokinase tribbles (TRB) 3 has been identified by us and others as a critical regulator of hepatic glucose homeostasis in type 2 diabetes and WAT lipid homeostasis. Therefore, this study aimed to test the hypothesis that the TRB gene family fulfills broader functions in the integration of metabolic and inflammatory pathways in various tissues.rnResearch design and methods-To determine the role of TRB family members for WAT function, we profiled the expression patterns of TRB13 under healthy and metabolic stress conditions. The differentially expressed TRB1 was functionally characterized in loss-of-function animal and primary adipocyte models.rnResults-Here, we show that the expression of TRB1 was specifically upregulated during acute and chronic inflammation in WAT of mice. Deficiency of TRB1 was found to impair cytokine gene expression in white adipocytes and to protect against high-fat diet-induced obesity. In adipocytes, TRB1 served as a nuclear transcriptional coactivator for the nuclear factor κB subunit RelA, thereby promoting the induction of proinflamma-tory cytokines in these cells.rnConclusions-As inflammation is typically seen in sepsis, insulin resistance, and obesity-related type 2 diabetes, the dual role of TRB1 as both a target and a (co) activator of inflammatory signaling might provide a molecular rationale for the amplification of proinflammatory responses in WAT in these subjects.
机译:目的基于白色脂肪组织(WAT)的能量储存室和内分泌器官的功能,它在维持全身能量稳态方面起着至关重要的作用。实际上,WAT功能障碍与肥胖相关的2型糖尿病有关,至少部分由脂肪细胞中的炎症反应触发。我们和其他人已经鉴定出伪激酶三联体(TRB)3是2型糖尿病和WAT脂质稳态中肝葡萄糖稳态的关键调节剂。因此,本研究旨在检验以下假设:TRB基因家族在各种组织的代谢和炎症途径整合中具有更广泛的功能。研究设计和方法-为了确定TRB家族成员在WAT功能中的作用,我们对表达进行了分析健康和代谢应激条件下TRB13的变化模式。结果表明,在小鼠WAT的急性和慢性炎症过程中,TRB1的表达被上调。发现TRB1缺乏会损害白色脂肪细胞中的细胞因子基因表达,并防止高脂饮食引起的肥胖。在脂肪细胞中,TRB1充当核因子κB亚基RelA的核转录共激活因子,从而促进了这些细胞中促炎性细胞因子的诱导。rn结论-炎症通常见于败血症,胰岛素抵抗和肥胖相关的2型在糖尿病中,TRB1作为炎症信号的靶标和(共)激活剂的双重作用可能为这些受试者中WAT中促炎反应的扩增提供分子基础。

著录项

  • 来源
    《Diabetes》 |2010年第8期|P.1991-2000|共10页
  • 作者单位

    Emmy Noether and Marie Curie Research Group, Molecular Metabolic Control, DKFZ-ZMBH Alliance, German Cancer Research Center Heidelberg, Heidelberg, Germany;

    rnEmmy Noether and Marie Curie Research Group, Molecular Metabolic Control, DKFZ-ZMBH Alliance, German Cancer Research Center Heidelberg, Heidelberg, Germany;

    rnEmmy Noether and Marie Curie Research Group, Molecular Metabolic Control, DKFZ-ZMBH Alliance, German Cancer Research Center Heidelberg, Heidelberg, Germany;

    rnEmmy Noether and Marie Curie Research Group, Molecular Metabolic Control, DKFZ-ZMBH Alliance, German Cancer Research Center Heidelberg, Heidelberg, Germany;

    rnEmmy Noether and Marie Curie Research Group, Molecular Metabolic Control, DKFZ-ZMBH Alliance, German Cancer Research Center Heidelberg, Heidelberg, Germany;

    rnEmmy Noether and Marie Curie Research Group, Molecular Metabolic Control, DKFZ-ZMBH Alliance, German Cancer Research Center Heidelberg, Heidelberg, Germany;

    rnEmmy Noether and Marie Curie Research Group, Molecular Metabolic Control, DKFZ-ZMBH Alliance, German Cancer Research Center Heidelberg, Heidelberg, Germany;

    rnEmmy Noether and Marie Curie Research Group, Molecular Metabolic Control, DKFZ-ZMBH Alliance, German Cancer Research Center Heidelberg, Heidelberg, Germany;

    rnEmmy Noether and Marie Curie Research Group, Molecular Metabolic Control, DKFZ-ZMBH Alliance, German Cancer Research Center Heidelberg, Heidelberg, Germany;

    rnDepartment of Host Defense, Graduate School of Medicine, Osaka University, Suita, Osaka, Japan;

    rnDepartment of Host Defense, Graduate School of Medicine, Osaka University, Suita, Osaka, Japan;

    rnDepartment of Host Defense, Graduate School of Medicine, Osaka University, Suita, Osaka, Japan;

    rnEmmy Noether and Marie Curie Research Group, Molecular Metabolic Control, DKFZ-ZMBH Alliance, German Cancer Research Center Heidelberg, Heidelberg, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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