2,4-Di-tert-butylphenol Induces Adipogenesis in Human Mesenchymal Stem Cells by Activating Retinoid X Receptors

Author:

Ren Xiao-Min12ORCID,Chang Richard C1,Huang Yikai1,Amorim Amato Angélica1,Carivenc Coralie3,Grimaldi Marina4,Kuo Yun1,Balaguer Patrick4,Bourguet William3,Blumberg Bruce156ORCID

Affiliation:

1. Department of Developmental and Cell Biology, University of California , Irvine, CA 92697-2300 , USA

2. Faculty of Environmental Science and Engineering, Kunming University of Science and Technology , Kunming 650500 , China

3. Centre de Biologie Structurale, Université de Montpellier, CNRS, Inserm , Montpellier , France

4. Institut de Recherche en Cancérologie de Montpellier (IRCM), Inserm U1194, Université Montpellier, Institut régional du Cancer de Montpellier (ICM) , Montpellier , France

5. Department of Pharmaceutical Sciences, University of California , Irvine, CA 92697-2300 , USA

6. Department of Biomedical Engineering, University of California , Irvine, CA 92697-2300 , USA

Abstract

Abstract2,4-Di-tert-butylphenol (2,4-DTBP) is an important commercial antioxidant and a toxic natural secondary metabolite that has been detected in humans. However, there is scant information regarding its toxicological effects. We asked whether 2,4-DTBP is a potential obesogen. Using a human mesenchymal stem cell adipogenesis assay, we found that exposure to 2,4-DTBP led to increased lipid accumulation and expression of adipogenic marker genes. Antagonist assays revealed that 2,4-DTBP increased lipid accumulation by activating the peroxisome proliferator-activated receptor (PPAR) γ-retinoid X receptor (RXR) heterodimer. 2,4-DTBP likely activated the PPARγ/RXRα heterodimer by activating RXRα but not directly binding to PPARγ. We confirmed that 2,4-DTBP directly bound to RXRα by solving the crystal structure of this complex, then predicted and demonstrated that related compounds could also activate RXRα. Our study demonstrated that 2,4-DTBP and related chemicals could act as obesogens and endocrine disruptors via RXRs. These data showed that 2,4-DTBP belongs to a family of compounds whose endocrine-disrupting and obesogenic effects can be strongly modulated by their chemical composition. Structure–activity studies such as the present one could help guide the rational development of safer antioxidants that do not interact with important nuclear receptors having broad effects on human development and physiology.

Funder

NIH

European Union's Horizon 2020

ANSES TOXCHEM

European Union's Horizon 2021

China Scholarship Council

French Infrastructure for Integrated Structural Biology

Publisher

The Endocrine Society

Subject

Endocrinology

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