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Published on: July 18, 2019
Tributyltin chloride (TBT) induces RXRA down-regulation and lipid accumulation in human liver cells
Fabio Stossi1,2,3, Radhika D Dandekar2, Hannah Johnson2,3
1Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, TX, United States of America.
Abstract:
A subset of environmental chemicals acts as "obesogens" as they increase adipose mass and lipid content in livers of treated rodents. One of the most studied class of obesogens are the tin-containing chemicals that have as a central moiety tributyltin (TBT), which bind and activate two nuclear hormone receptors, Peroxisome Proliferator Activated Receptor Gamma (PPARG) and Retinoid X Receptor Alpha (RXRA), at nanomolar concentrations. Here, we have tested whether TBT chloride at such concentrations may affect the neutral lipid level in two cell line models of human liver. Indeed, using high content image analysis (HCA), TBT significantly increased neutral lipid content in a time- and concentration-dependent manner. Consistent with the observed increased lipid accumulation, RNA fluorescence in situ hybridization (RNA FISH) and RT-qPCR experiments revealed that TBT enhanced the steady-state mRNA levels of two key genes for de novo lipogenesis, the transcription factor SREBF1 and its downstream enzymatic target, FASN. Importantly, pre-treatment of cells with 2-deoxy-D-glucose reduced TBT-mediated lipid accumulation, thereby suggesting a role for active glycolysis during the process of lipid accumulation. As other RXRA binding ligands can promote RXRA protein turnover via the 26S proteasome, TBT was tested for such an effect in the two liver cell lines. We found that TBT, in a time- and dose-dependent manner, significantly reduced steady-state RXRA levels in a proteasome-dependent manner. While TBT promotes both RXRA protein turnover and lipid accumulation, we found no correlation between these two events at the single cell level, thereby suggesting an additional mechanism may be involved in TBT promotion of lipid accumulation, such as glycolysis.
Insights
Environmental tributyltin (TBT) increases liver fat by activating lipogenesis genes and promoting glycolysis. TBT also reduces Retinoid X Receptor Alpha (RXRA) protein levels, but this turnover is not directly linked to lipid accumulation.
Area of Science:
- Environmental toxicology
- Molecular biology
- Hepatology
Background:
- Environmental chemicals known as obesogens can disrupt metabolic homeostasis.
- Tributyltin (TBT) is a prominent obesogen that targets nuclear receptors like PPARG and RXRA.
- Understanding TBT's effects on human liver cells is crucial for assessing metabolic disease risks.
Purpose of the Study:
- To investigate the impact of TBT on neutral lipid accumulation in human liver cell models.
- To elucidate the molecular mechanisms underlying TBT-induced lipogenesis.
- To explore the relationship between TBT, RXRA protein levels, and lipid accumulation.
Main Methods:
- High-content image analysis (HCA) for quantifying neutral lipids.
- RNA fluorescence in situ hybridization (RNA FISH) and RT-qPCR for gene expression analysis.
- Cellular assays to assess proteasome activity and glycolysis involvement.
Main Results:
- TBT significantly increased neutral lipid content in liver cells in a time- and dose-dependent manner.
- TBT upregulated key lipogenic genes, including SREBF1 and FASN.
- TBT induced RXRA protein turnover via the 26S proteasome, independent of lipid accumulation.
- Inhibition of glycolysis reduced TBT-mediated lipid accumulation.
Conclusions:
- TBT promotes lipid accumulation in human liver cells through enhanced de novo lipogenesis and potentially active glycolysis.
- TBT-induced RXRA protein degradation is a separate effect from its lipogenic activity.
- Glycolysis may play a significant role in TBT's obesogenic effects on liver cells.

