Neonatal diethylstilbestrol exposure alters the metabolic profile of uterine epithelial cells

Author:

Yin Yan1,Lin Congxing1,Veith G. Michael1,Chen Hong1,Dhandha Maulik1,Ma Liang1

Affiliation:

1. Washington University, MO, USA

Abstract

Summary Developmental exposure to diethylstilbestrol (DES) causes reproductive tract malformations, affects fertility and increases the risk of clear cell carcinoma of the vagina and cervix in humans. Previous studies on a well-established mouse DES model demonstrated that it recapitulates many features of the human syndrome, yet the underlying molecular mechanism is far from clear. Using the neonatal DES mouse model, the present study uses global transcript profiling to systematically explore early gene expression changes in individual epithelial and mesenchymal compartments of the neonatal uterus. Over 900 genes show differential expression upon DES treatment in either one or both tissue layers. Interestingly, multiple components of the Peroxisome Proliferator-Activated Receptor gamma (PPARγ)-mediated adipogenic/lipid metabolic pathway, including PPARγ itself, are targets of DES in the neonatal uterus. TEM and Oil Red O staining further demonstrate a dramatic increase in lipid deposition in the uterine epithelial cells upon DES exposure. Neonatal DES exposure also perturbs glucose homeostasis in the uterine epithelium. Some of these neonatal DES-induced metabolic changes appear to last into adulthood, suggesting a permanent effect of DES on energy metabolism in uterine epithelial cells. This study extends the list of biological processes that can be regulated by estrogen or DES, and provides a novel perspective for endocrine disruptor induced reproductive abnormalities.

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

Reference59 articles.

1. PPAR gamma is required for placental, cardiac, and adipose tissue development;Barak;Mol. Cell,1999

2. A simple efficient method for separating murine uterine epithelial and mesenchymal cells;Bigsby;Am. J. Physiol.,1986

3. Transcriptional regulation of adipogenesis by KLF4;Birsoy;Cell Metab.,2008

4. Effect of estradiol and progesterone on phosphatidylinositol metabolism in the uterine epithelium of the mouse;Bourke;J. Steroid Biochem. Mol. Biol.,1991

5. The transcription factors Egr1 and Egr2 have opposing influences on adipocyte differentiation;Boyle;Cell Death Differ.,2009

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