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Farnesoid X receptor is essential for normal glucose homeostasis
Ke Ma, Pradip K. Saha, Lawrence Chan, David D. Moore
Ke Ma, Pradip K. Saha, Lawrence Chan, David D. Moore
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Research Article Endocrinology

Farnesoid X receptor is essential for normal glucose homeostasis

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Abstract

The bile acid receptor farnesoid X receptor (FXR; NR1H4) is a central regulator of bile acid and lipid metabolism. We show here that FXR plays a key regulatory role in glucose homeostasis. FXR-null mice developed severe fatty liver and elevated circulating FFAs, which was associated with elevated serum glucose and impaired glucose and insulin tolerance. Their insulin resistance was confirmed by the hyperinsulinemic euglycemic clamp, which showed attenuated inhibition of hepatic glucose production by insulin and reduced peripheral glucose disposal. In FXR–/– skeletal muscle and liver, multiple steps in the insulin signaling pathway were markedly blunted. In skeletal muscle, which does not express FXR, triglyceride and FFA levels were increased, and we propose that their inhibitory effects account for insulin resistance in that tissue. In contrast to the results in FXR–/– mice, bile acid activation of FXR in WT mice repressed expression of gluconeogenic genes and decreased serum glucose. The absence of this repression in both FXR–/– and small heterodimer partner–null (SHP–/–) mice demonstrated that the previously described FXR-SHP nuclear receptor cascade also targets glucose metabolism. Taken together, our results identify a link between lipid and glucose metabolism mediated by the FXR-SHP cascade.

Authors

Ke Ma, Pradip K. Saha, Lawrence Chan, David D. Moore

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Figure 1

Lipid abnormalities in FXR–/– mice.

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Lipid abnormalities in FXR–/– mice.
               
Elevated plasma trig...
Elevated plasma triglyceride (A), cholesterol (B), and FFA levels (C) were observed in FXR–/– mice compared with WT mice (n = 8–11 per group) after overnight fasting. (D) Elevated liver triglyceride content was seen in FXR–/– mice. (E) Induction of genes involved in lipogenesis in the liver in FXR–/– mice at random-fed state. RNA samples were pooled from 5 mice in each group and loaded in duplicates. FAS, fatty acid synthase; SCD-1, stearoyl-CoA desmutase 1. (F) Plasma glucose levels in random-fed and fasting states. **P < 0.01 versus WT.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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