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IRX5 regulates adipocyte amyloid precursor protein and mitochondrial respiration in obesity.
Bjune, Jan-Inge; Haugen, Christine; Gudbrandsen, Oddrun; Nordbø, Ole P; Nielsen, Hans J; Våge, Villy; Njølstad, Pål R; Sagen, Jørn V; Dankel, Simon N; Mellgren, Gunnar.
Afiliação
  • Bjune JI; KG Jebsen Center for Diabetes Research, Department of Clinical Science, University of Bergen, 5020, Bergen, Norway.
  • Haugen C; Hormone Laboratory, Haukeland University Hospital, 5021, Bergen, Norway.
  • Gudbrandsen O; KG Jebsen Center for Diabetes Research, Department of Clinical Science, University of Bergen, 5020, Bergen, Norway.
  • Nordbø OP; Hormone Laboratory, Haukeland University Hospital, 5021, Bergen, Norway.
  • Nielsen HJ; Department of Clinical Medicine, University of Bergen, 5020, Bergen, Norway.
  • Våge V; KG Jebsen Center for Diabetes Research, Department of Clinical Science, University of Bergen, 5020, Bergen, Norway.
  • Njølstad PR; Hormone Laboratory, Haukeland University Hospital, 5021, Bergen, Norway.
  • Sagen JV; Department of Surgery, Voss Hospital, 5704, Voss, Norway.
  • Dankel SN; Department of Surgery, Voss Hospital, 5704, Voss, Norway.
  • Mellgren G; KG Jebsen Center for Diabetes Research, Department of Clinical Science, University of Bergen, 5020, Bergen, Norway.
Int J Obes (Lond) ; 43(11): 2151-2162, 2019 11.
Article em En | MEDLINE | ID: mdl-30538277
OBJECTIVE: A causal obesity risk variant in the FTO locus was recently shown to inhibit adipocyte thermogenesis via increased adipose expression of the homeobox transcription factors IRX3 and IRX5. However, causal effects of IRX5 on fat storage remain to be shown in vivo, and discovery of downstream mediators may open new therapeutic avenues. METHODS: 17 WT and 13 Irx5 knockout (KO) mice were fed low-fat control (Ctr) or high-fat (HF) diet for 10 weeks. Body weight, energy intake and fat mass were measured. Irx5-dependent gene expression was explored by transcriptome analysis of epididymal white adipose tissue (eWAT), confirmatory obesity-dependent expression in human adipocytes in vivo, and in vitro knock-down, overexpression and transcriptional activation assays. RESULTS: Irx5 knock-out mice weighed less, had diminished fat mass, and were protected from diet-induced fat accumulation. Key adipose mitochondrial genes Pparγ coactivator 1-alpha (Pgc-1α) and uncoupling protein 1 (Ucp1) were upregulated, and a gene network centered on amyloid precursor protein (App) was downregulated in adipose tissue of knock-out mice and in isolated mouse adipocytes with stable Irx5 knock-down. An APP-centered network was also enriched in isolated adipocytes from obese compared to lean humans. IRX5 overexpression increased APP promoter activity and both IRX5 and APP inhibited transactivation of PGC-1α and UCP1. Knock-down of Irx5 or App increased mitochondrial respiration in adipocytes. CONCLUSION: Irx5-KO mice were protected from obesity and this can partially be attributed to reduced adipose App and improved mitochondrial respiration. This novel Irx5-App pathway in adipose tissue is a possible therapeutic entry point against obesity.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fatores de Transcrição / Precursor de Proteína beta-Amiloide / Adipócitos / Proteínas de Homeodomínio / Mitocôndrias / Obesidade Idioma: En Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Noruega

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fatores de Transcrição / Precursor de Proteína beta-Amiloide / Adipócitos / Proteínas de Homeodomínio / Mitocôndrias / Obesidade Idioma: En Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Noruega