Related Experiment Video
Updated: Sep 11, 2026

Using Multi-fluorinated Bile Acids and In Vivo Magnetic Resonance Imaging to Measure Bile Acid Transport
Published on: November 27, 2016
SMRT regulation of nuclear receptors orchestrates bile acid homeostasis
Kyeongkyu Kim1, Sungsoon Fang1,2, Suk-Hyun Hong1
1Gene Expression Laboratory, Salk Institute for Biological Studies, La Jolla, CA, USA.
Abstract:
Nuclear receptors are key effectors of metabolic programs; however, the contribution of co-regulatory complexes in maintaining metabolic homeostasis is not fully understood. Here, we show that modulation of the constitutive androstane receptor (CAR) by the co-repressor silencing mediator of retinoic acid and thyroid hormone receptors (SMRT) is required for bile acid (BA) homeostasis. Transcriptional changes in the livers of mice harboring a targeted disruption in one of the nuclear receptor-interacting domains (RIDs), SMRTmRID1 mice, revealed increased expression of CAR target genes involved in BA export. Consistent with this, SMRTmRID1 mice challenged with a high-fat diet showed increased BAs in serum and urine with commensurate decreases in the liver and intestines. Notably, the reduction in intestinal BAs led to decreased activity of the BA receptor farnesoid X receptor (FXR). This reduction in FXR activity compromised the integrity of the intestinal barrier, increased bacterial burden, and augmented intestinal inflammation. Moreover, SMRTmRID1 mice were susceptible to intestinal damage, with higher mortality rates in acute colitis and colitis-associated cancer models. Treatment with a synthetic FXR agonist (XL335) rescued SMRTmRID1 mice during acute colitis. Collectively, these studies highlight the importance of SMRT in maintaining BA homeostasis through direct and indirect regulation of hepatic CAR and intestinal FXR activity, respectively, and point to potential therapeutic routes for combating intestinal pathologies associated with a high-fat diet.
Related Concept Videos
Transducer Mechanism: Nuclear Receptors
About 48 different soluble family members of nuclear receptors are identified that can be divided into two main classes:
Regulation of Nuclear Protein Sorting
Regulation of the Unfolded Protein Response
Receptor Downregulation in MVBs
The EGFR can initiate signaling pathways that lead to cell proliferation, migration, and differentiation. Overexpression of EGFR stimulates cells to proliferate. Excessive EGFR activation may...
Signal Transduction: Overview
Typically, signal transduction involves three...
Bile
Bile is released when dietary fats enter...