Bile acids lower triglyceride levels via a pathway involving FXR, SHP, and SREBP-1c
Желчные кислоты снижают уровень триглицеридов посредством пути, включающего FXR, SHP и SREBP-1c
2004-05-15
SCID: 54.1/hh7xuygu
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Bile acidsFarnesoid X receptor (FXR)SREBP-1cShort heterodimer partner (SHP)Triglyceride homeostasis
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Abstract (AI)
We explored the effects of bile acids on triglyceride (TG) homeostasis using a combination of molecular, cellular, and animal models. Cholic acid (CA) prevents hepatic TG accumulation, VLDL secretion, and elevated serum TG in mouse models of hypertriglyceridemia. At the molecular level, CA decreases hepatic expression of SREBP-1c and its lipogenic target genes. Through the use of mouse mutants for the short heterodimer partner (SHP) and liver X receptor (LXR) alpha and beta, we demonstrate the critical dependence of the reduction of SREBP-1c expression by either natural or synthetic farnesoid X receptor (FXR) agonists on both SHP and LXR alpha and LXR beta. These results suggest that strategies aimed at increasing FXR activity and the repressive effects of SHP should be explored to correct hypertriglyceridemia.
Key Findings
1
Cholic acid lowers hepatic SREBP-1c expression and the expression of its lipogenic target genes.
2
Cholic acid prevents hepatic triglyceride accumulation, VLDL secretion, and elevated serum triglycerides in hypertriglyceridemic mouse models.
3
Increasing FXR activity and SHP-mediated repression may represent therapeutic strategies for correcting hypertriglyceridemia.
4
Suppression of SREBP-1c by natural or synthetic FXR agonists requires both the corepressor SHP and LXRα/β.
Research Object
Hepatic triglyceride homeostasis and hypertriglyceridemia in mice
Research Subject
FXR-, SHP-, and LXR-dependent regulation of hepatic SREBP-1c expression, lipogenesis, VLDL secretion, and serum triglyceride levels by bile acids
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2004-05-15
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