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Inflammatory Pathways Regulated by Tumor Necrosis Receptor-Associated Factor 1 Protect From Metabolic Consequences in
Nathaly Anto Michel1, Christian Colberg1, Konrad Buscher1
1From the Cardiology and Angiology I, University Heart Center and Medical Center (N.A.M., C.C., B.D., N.H., K.P., T.M., F.W., P.S., I.H., T.H., C.v.z.M., C.B., A.Z., D.W.), Faculty of Biology (N.A.M.), Department of Radiology, Medical Physics, Medical Center (D.v.E.), Hematology and Oncology (D.P.), and Department of Urology (R.S.), University of Freiburg, Germany; Inflammation Biology, La Jolla Institute for Allergy and Immunology, CA (K.B., A.B.P., E.E., K.L., D.W.); Neurosurgery, University of Erlangen, Germany (B.S.); Center for Cardiovascular Research (U.K.) and Department of Endocrinology & Metabolism, Center for Cardiovascular Research (CCR), Germany (S.B.), Charité-Universitätsmedizin Berlin, Germany; and Deutsches Zentrum für Herz-Kreislauf-Forschung (DZHK), Partner Site Berlin, Germany (S.B.).
Rationale:
The coincidence of inflammation and metabolic derangements in obese adipose tissue has sparked the concept of met-inflammation. Previous observations, however, suggest that inflammatory pathways may not ultimately cause dysmetabolism.
Objective:
We have revisited the relationship between inflammation and metabolism by testing the role of TRAF (tumor necrosis receptor-associated factor)-1, an inhibitory adapter of inflammatory signaling of TNF (tumor necrosis factor)-α, IL (interleukin)-1β, and TLRs (toll-like receptors).
Methods And Results:
Mice deficient for TRAF-1, which is expressed in obese adipocytes and adipose tissue lymphocytes, caused an expected hyperinflammatory phenotype in adipose tissue with enhanced adipokine and chemokine expression, increased leukocyte accumulation, and potentiated proinflammatory signaling in macrophages and adipocytes in a mouse model of diet-induced obesity. Unexpectedly, TRAF-1-/- mice were protected from metabolic derangements and adipocyte growth, failed to gain weight, and showed improved insulin resistance-an effect caused by increased lipid breakdown in adipocytes and UCP (uncoupling protein)-1-enabled thermogenesis. TRAF-1-dependent catabolic and proinflammatory cues were synergistically driven by β3-adrenergic and inflammatory signaling and required the presence of both TRAF-1-deficient adipocytes and macrophages. In human obesity, TRAF-1-dependent genes were upregulated.
Conclusions:
Enhancing TRAF-1-dependent inflammatory pathways in a gain-of-function approach protected from metabolic derangements in diet-induced obesity. These findings identify TRAF-1 as a regulator of dysmetabolism in mice and humans and question the pathogenic role of chronic inflammation in metabolism.
Insights
Tumor necrosis factor receptor-associated factor-1 (TRAF-1) deficiency unexpectedly protected obese mice from metabolic dysfunction by enhancing thermogenesis and lipid breakdown. These findings challenge the role of inflammation in causing metabolic disorders.
Area of Science:
- Metabolic and inflammatory signaling in obesity
- Adipose tissue biology and function
Background:
- Met-inflammation describes the link between inflammation and metabolic issues in obesity.
- However, the causal role of inflammation in metabolic derangements remains debated.
Purpose of the Study:
- To investigate the role of TRAF-1 (tumor necrosis receptor-associated factor)-1, an inhibitor of inflammatory signaling, in the relationship between inflammation and metabolism.
- To test the hypothesis that TRAF-1 influences metabolic dysfunction in diet-induced obesity.
Main Methods:
- Utilized a mouse model of diet-induced obesity with genetic deficiency in TRAF-1.
- Assessed adipose tissue inflammation, adipocyte function, insulin resistance, weight gain, and thermogenesis.
- Analyzed TRAF-1-dependent gene expression in human obesity samples.
Main Results:
- TRAF-1 deficient mice exhibited increased adipose tissue inflammation but were protected from obesity-induced metabolic derangements, weight gain, and insulin resistance.
- Protection was linked to enhanced adipocyte lipid breakdown and uncoupling protein (UCP)-1-mediated thermogenesis.
- TRAF-1-dependent genes were upregulated in human obesity.
Conclusions:
- TRAF-1 acts as a key regulator of metabolic dysfunction in obesity, independent of its inflammatory signaling role.
- Enhancing TRAF-1-dependent pathways can protect against metabolic derangements.
- These findings question the direct pathogenic role of chronic inflammation in metabolic diseases.
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