Microarray Analyses during Adipogenesis: Understanding the Effects of Wnt Signaling on Adipogenesis and the Roles of Liver X Receptor α in Adipocyte Metabolism

Author:

Ross Sarah E.1,Erickson Robin L.1,Gerin Isabelle1,DeRose Paul M.2,Bajnok Laszlo1,Longo Kenneth A.1,Misek David E.3,Kuick Rork3,Hanash Samir M.3,Atkins Kevin B.4,Andresen Sissel M.5,Nebb Hilde I.5,Madsen Lise6,Kristiansen Karsten7,MacDougald Ormond A.12

Affiliation:

1. Department of Physiology

2. Cell and Molecular Biology Program

3. Department of Pediatrics and Communicative Diseases

4. Department of Internal Medicine, University of Michigan School of Medicine, Ann Arbor, Michigan 48109

5. Institute for Nutrition Research, University of Oslo, Oslo

6. Department of Clinical Biochemistry, University of Bergen, Bergen, Norway

7. Department of Biochemistry and Molecular Biology, University of Southern Denmark, Odense, Denmark

Abstract

ABSTRACT Wnt signaling maintains preadipocytes in an undifferentiated state. When Wnt signaling is enforced, 3T3-L1 preadipocytes no longer undergo adipocyte conversion in response to adipogenic medium. Here we used microarray analyses to identify subsets of genes whose expression is aberrant when differentiation is blocked through enforced Wnt signaling. Furthermore, we used the microarray data to identify potentially important adipocyte genes and chose one of these, the liver X receptor α (LXRα), for further analyses. Our studies indicate that enforced Wnt signaling blunts the changes in gene expression that correspond to mitotic clonal expansion, suggesting that Wnt signaling inhibits adipogenesis in part through dysregulation of the cell cycle. Experiments designed to uncover the potential role of LXRα in adipogenesis revealed that this transcription factor, unlike CCAAT/enhancer binding protein α and peroxisome proliferator-activated receptor gamma, is not adipogenic but rather inhibits adipogenesis if inappropriately expressed and activated. However, LXRα has several important roles in adipocyte function. Our studies show that this nuclear receptor increases basal glucose uptake and glycogen synthesis in 3T3-L1 adipocytes. In addition, LXRα increases cholesterol synthesis and release of nonesterified fatty acids. Finally, treatment of mice with an LXRα agonist results in increased serum levels of glycerol and nonesterified fatty acids, consistent with increased lipolysis within adipose tissue. These findings demonstrate new metabolic roles for LXRα and increase our understanding of adipogenesis.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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