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miR-130b/301b Is a Negative Regulator of Beige Adipogenesis and Energy Metabolism In Vitro and In Vivo.
Luo, Wenyi; Kim, Youngsil; Jensen, Mary Ellen; Herlea-Pana, Oana; Wang, Weidong; Rudolph, Michael C; Friedman, Jacob E; Chernausek, Steven D; Jiang, Shaoning.
Afiliação
  • Luo W; Harold Hamm Diabetes Center, University of Oklahoma Health Sciences Center, Oklahoma City, OK.
  • Kim Y; Department of Pathology, University of Oklahoma Health Sciences Center, Oklahoma City, OK.
  • Jensen ME; Harold Hamm Diabetes Center, University of Oklahoma Health Sciences Center, Oklahoma City, OK.
  • Herlea-Pana O; Harold Hamm Diabetes Center, University of Oklahoma Health Sciences Center, Oklahoma City, OK.
  • Wang W; Department of Medicine, University of Oklahoma Health Sciences Center, Oklahoma City, OK.
  • Rudolph MC; Harold Hamm Diabetes Center, University of Oklahoma Health Sciences Center, Oklahoma City, OK.
  • Friedman JE; Department of Medicine, University of Oklahoma Health Sciences Center, Oklahoma City, OK.
  • Chernausek SD; Harold Hamm Diabetes Center, University of Oklahoma Health Sciences Center, Oklahoma City, OK.
  • Jiang S; Department of Physiology, University of Oklahoma Health Sciences Center, Oklahoma City, OK.
Diabetes ; 71(11): 2360-2371, 2022 11 01.
Article em En | MEDLINE | ID: mdl-36001751
ABSTRACT
Thermogenic brown or beige adipocytes dissipate energy in the form of heat and thereby counteract obesity and related metabolic complications. The miRNA cluster miR-130b/301b is highly expressed in adipose tissues and has been implicated in metabolic diseases as a posttranscriptional regulator of mitochondrial biogenesis and lipid metabolism. We investigated the roles of miR-130b/301b in regulating beige adipogenesis in vivo and in vitro. miR-130b/301b declined in adipose progenitor cells during beige adipogenesis, while forced overexpression of miR-130b-3p or miR-301b-3p suppressed uncoupling protein 1 (UCP1) and mitochondrial respiration, suggesting that a decline in miR-130b-3p or miR-301b-3p is required for adipocyte precursors to develop the beige phenotype. Mechanistically, miR-130b/301b directly targeted AMP-activated protein kinase (AMPKα1) and suppressed peroxisome proliferator-activated receptor γ coactivator-1α (Pgc-1α), key regulators of brown adipogenesis and mitochondrial biogenesis. Mice lacking the miR-130b/301b miRNA cluster showed reduced visceral adiposity and less weight gain. miR-130b/301b null mice exhibited improved glucose tolerance, increased UCP1 and AMPK activation in subcutaneous fat (inguinal white adipose tissue [iWAT]), and increased response to cold-induced energy expenditure. Together, these data identify the miR-130b/301b cluster as a new regulator that suppresses beige adipogenesis involving PGC-1α and AMPK signaling in iWAT and is therefore a potential therapeutic target against obesity and related metabolic disorders.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: MicroRNAs / Adipócitos Bege Limite: Animals Idioma: En Revista: Diabetes Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: MicroRNAs / Adipócitos Bege Limite: Animals Idioma: En Revista: Diabetes Ano de publicação: 2022 Tipo de documento: Article
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