The Journal of Nutritional Biochemistry
Volume 21, Issue 9 , Pages 841-847, September 2010

Daidzein and the daidzein metabolite, equol, enhance adipocyte differentiation and PPARγ transcriptional activity

  • Kae Won Cho

      Affiliations

    • Department of Nutrition, University of Massachusetts, Amherst, MA 01003, USA
  • ,
  • Ok-Hwan Lee

      Affiliations

    • Department of Nutrition, University of Massachusetts, Amherst, MA 01003, USA
  • ,
  • William J. Banz

      Affiliations

    • Department of Nutrition and Animal Science, Southern Illinois University, Carbondale, IL 62901, USA
  • ,
  • Naima Moustaid-Moussa

      Affiliations

    • Department of Animal Science and UT Obesity Research Center, The University of Tennessee, Knoxville, TN, 37996, USA
  • ,
  • Neil F. Shay

      Affiliations

    • Department of Food Science and Nutrition, University of Florida, FL, 32611, USA
  • ,
  • Young-Cheul Kim

      Affiliations

    • Department of Nutrition, University of Massachusetts, Amherst, MA 01003, USA
    • Corresponding Author InformationCorresponding author. Tel.: +1 413 577 4553; fax: +1 413 545 1074.

Received 15 December 2008; received in revised form 20 March 2009; accepted 23 June 2009.

Abstract 

Dietary soy isoflavones have been shown to favorably alter the metabolic phenotypes associated with Type 2 diabetes. However, the identification of direct targets and the underlying molecular mechanisms by which soy isoflaovones exert antidiabetic effects remain elusive. Since the insulin-sensitizing effects of thiazolidinediones, antidiabetic drugs, are mediated through activation of peroxisome proliferators-activated receptor gamma (PPARγ), we examined the effects of daidzein and the daidzein metabolite, equol, on adipocyte differentiation and PPARγ activation. In 3T3-L1 cells, daidzein enhanced adipocyte differentiation and PPARγ expression in a dose-dependent manner. Daidzein also dose-dependently increased insulin-stimulated glucose uptake and the relative abundance of insulin-responsive glucose transporter 4 (GLUT4) and insulin receptor substrate 1 (IRS-1) mRNA. In C3H10T1/2 cells, both daidzein and equol at 1 μmol/L and higher significantly increased adipocyte differentiation and insulin-stimulated glucose uptake. Furthermore, daidzein and equol up-regulated PPARγ-mediated transcriptional activity, and daidzein restored the PPARγ antagonist-induced inhibition of aP2 and GLUT4 mRNA levels. Our results indicate that daidzein enhances insulin-stimulated glucose uptake in adipocytes by increasing the expression of GLUT4 and IRS-1 via the activation of PPARγ. These data further support the recent findings that favorable effects of dietary soy isoflavones may be attributable to daidzein and its metabolite equol.

Keywords: Daidzein, Equol, PPARγ, Adipocyte differentiation, Insulin sensitivity, GLUT4

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PII: S0955-2863(09)00136-3

doi:10.1016/j.jnutbio.2009.06.012

The Journal of Nutritional Biochemistry
Volume 21, Issue 9 , Pages 841-847, September 2010