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Biliverdin reductase a (BVRA) knockout in adipocytes induces hypertrophy and reduces mitochondria in white fat of obese mice

  • David E. Stec
  • , Darren M. Gordon
  • , Andrea L. Nestor-Kalinoski
  • , Matthew C. Donald
  • , Zachary L. Mitchell
  • , Justin F. Creeden
  • , Terry D. Hinds

Producción científica: Articlerevisión exhaustiva

49 Citas (Scopus)

Resumen

Biliverdin reductase (BVR) is an enzymatic and signaling protein that has multifaceted roles in physiological systems. Despite the wealth of knowledge about BVR, no data exist regarding its actions in adipocytes. Here, we generated an adipose-specific deletion of biliverdin reductase-A (BVRA) (BlvraFatKO) in mice to determine the function of BVRA in adipocytes and how it may impact adipose tissue expansion. The BlvraFatKO and littermate control (BlvraFlox) mice were placed on a high-fat diet (HFD) for 12 weeks. Body weights were measured weekly and body composition, fasting blood glucose and insulin levels were quantitated at the end of the 12 weeks. The data showed that the percent body fat and body weights did not differ between the groups; however, BlvraFatKO mice had significantly higher visceral fat as compared to the BlvraFlox. The loss of adipocyte BVRA decreased the mitochondrial number in white adipose tissue (WAT), and increased inflammation and adipocyte size, but this was not observed in brown adipose tissue (BAT). There were genes significantly reduced in WAT that induce the browning effect such as Ppara and Adrb3, indicating that BVRA improves mitochondria function and beige-type white adipocytes. The BlvraFatKO mice also had significantly higher fasting blood glucose levels and no changes in plasma insulin levels, which is indicative of decreased insulin signaling in WAT, as evidenced by reduced levels of phosphorylated AKT (pAKT) and Glut4 mRNA. These results demonstrate the essential role of BVRA in WAT in insulin signaling and adipocyte hypertrophy.

Idioma originalEnglish
Número de artículo387
PublicaciónBiomolecules
Volumen10
N.º3
DOI
EstadoPublished - mar 2020

Nota bibliográfica

Publisher Copyright:
© 2020 by the authors. Licensee MDPI, Basel, Switzerland.

Financiación

This work was supported by the National Institutes of Health L32MD009154 (T.D.H.J.), the National Heart, Lung and Blood Institute [K01HL-125445] (T.D.H.J.) and (P01 HL05197-11), (D.E.S.), and the National Institute of General Medical Sciences (P20GM104357-02) (D.E.S.). The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health. The authors gratefully acknowledge the Analytical and Assay Core Laboratory in the Department of Physiology & Biophysics at the University of Mississippi Medical Center. Funding: This work was supported by the National Institutes of Health L32MD009154 (T.D.H.J.), the National Heart, Lung and Blood Institute [K01HL-125445] (T.D.H.J.) and (P01 HL05197-11), (D.E.S.), and the National Institute of General Medical Sciences (P20GM104357-02) (D.E.S.). The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health.

FinanciadoresNúmero del financiador
Department of Physiology and Biophysics
University of Mississippi Medical Center
National Institutes of Health (NIH)L32MD009154
National Heart, Lung, and Blood Institute (NHLBI)P01 HL05197-11, K01HL-125445
National Institute of General Medical Sciences DP2GM119177 Sophie Dumont National Institute of General Medical SciencesP20GM104357-02
National Institute of Diabetes and Digestive and Kidney DiseasesP30DK020572

    ODS de las Naciones Unidas

    Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

    1. Good health and well being
      Good health and well being

    ASJC Scopus subject areas

    • Biochemistry
    • Molecular Biology

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