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Hepatic organic anion transporting polypeptide transporter and thyroid hormone receptor interplay determines
Henriette E Meyer zu Schwabedissen1, Joseph A Ware, David Finkelstein
1Division of Clinical Pharmacology, Department of Medicine, The University of Western Ontario, London, ON, Canada.
Unlabelled:
The role of organic anion transporting polypeptides (OATPs), particularly the members of OATP1B subfamily, in hepatocellular handling of endogenous and exogenous compounds is an important and emerging area of research. Using a mouse model lacking Slco1b2, the murine ortholog of the OATP1B subfamily, we have demonstrated previously that genetic ablation causes reduced hepatic clearance capacity for substrates. In this study, we focused on the physiological function of the hepatic OATP1B transporters. First, we studied the influence of the Oatp1b2 deletion on bile acid (BA) metabolism, showing that lack of the transporter results in a significantly reduced expression of Cyp7a1, the key enzyme of BA synthesis, resulting in elevated cholesterol levels after high dietary fat challenge. Furthermore, Slco1b2-/- mice exhibited delayed clearance after oral glucose challenge resulting from reduced hepatic glucose uptake. In addition to increased hepatic glycogen content, Slco1b2-/- mice exhibited reduced glucose output after pyruvate challenge. This is in accordance with reduced hepatic expression of phosphoenolpyruvate carboxykinase (PEPCK) in knockout mice. We show that this phenotype is due to the loss of liver-specific Oatp1b2-mediated hepatocellular thyroid hormone entry, which then leads to reduced transcriptional activation of target genes of hepatic thyroid hormone receptor (TR), including Cyp7a1 and Pepck but also Dio1 and Glut2. Importantly, we assessed human relevance using a cohort of archived human livers in which OATP1B1 expression was noted to be highly associated with TR target genes, especially for glucose facilitating transporter 2 (GLUT2). Furthermore, GLUT2 expression was significantly decreased in livers harboring a common genetic polymorphism in SLCO1B1.
Conclusion:
Our findings reveal that OATP1B-mediated hepatic thyroid hormone entry is a key determinant of cholesterol and glucose homeostasis.
Insights
Organic anion transporting polypeptides (OATPs) are crucial for liver function. This study shows OATP1B transporters regulate thyroid hormone entry, impacting cholesterol and glucose homeostasis in mice and humans.
Area of Science:
- Hepatology
- Endocrinology
- Molecular Biology
Background:
- Organic anion transporting polypeptides (OATPs), especially OATP1B subfamily members, play a vital role in liver function.
- Genetic ablation of Slco1b2, the mouse OATP1B ortholog, impairs hepatic clearance capacity.
Purpose of the Study:
- To investigate the physiological role of hepatic OATP1B transporters in bile acid and glucose metabolism.
- To elucidate the mechanism linking OATP1B transporters to metabolic regulation.
Main Methods:
- Utilized a Slco1b2 knockout mouse model.
- Analyzed bile acid metabolism, glucose uptake and output, and gene expression (Cyp7a1, PEPCK, Dio1, Glut2).
- Assessed human liver samples for OATP1B1 expression and its association with thyroid hormone receptor target genes.
Main Results:
- Slco1b2 deficiency led to reduced Cyp7a1 expression, elevated cholesterol, and impaired glucose clearance.
- Knockout mice showed increased hepatic glycogen and reduced glucose output, linked to decreased PEPCK expression.
- Phenotype attributed to impaired liver-specific thyroid hormone entry via Oatp1b2, affecting thyroid hormone receptor transcriptional activity.
- Human livers showed OATP1B1 expression correlated with thyroid hormone receptor target genes, including GLUT2.
- A common SLCO1B1 polymorphism was associated with decreased GLUT2 expression.
Conclusions:
- OATP1B-mediated hepatic thyroid hormone uptake is essential for maintaining cholesterol and glucose homeostasis.
- This pathway highlights a novel link between OATP transporters and metabolic regulation.
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