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Published on: January 26, 2012
FGF21 induced by carbon monoxide mediates metabolic homeostasis via the PERK/ATF4 pathway
Yeonsoo Joe1, Sena Kim1, Hyo Jeong Kim1
1Meta-Inflammation Research Institute of Basic Research, School of Biological Sciences, University of Ulsan, Ulsan, South Korea.
Abstract:
The prevalence of metabolic diseases, including type 2 diabetes, obesity, and cardiovascular disease, has rapidly increased, yet the molecular mechanisms underlying the metabolic syndrome, a primary risk factor, remain incompletely understood. The small, gaseous molecule carbon monoxide (CO) has well-known anti-inflammatory, antiproliferative, and antiapoptotic effects in a variety of cellular- and tissue-injury models, whereas its potential effects on the complex pathways of metabolic disease remain unknown. We demonstrate here that CO can alleviate metabolic dysfunction in vivo and in vitro. We show that CO increased the expression and section of the fibroblast growth factor 21 (FGF21) in hepatocytes and liver. CO-stimulated PERK activation and enhanced the levels of FGF21 via the eIF2α-ATF4 signaling pathway. The induction of FGF21 by CO attenuated endoreticulum stress- or diet-induced, obesity-dependent hepatic steatosis. Moreover, CO inhalation lowered blood glucose levels, enhanced insulin sensitivity, and promoted energy expenditure by stimulating the emergence of beige adipose cells from white adipose cells. In conclusion, we suggest that CO acts as a potent inducer of FGF21 expression and that CO critically depends on FGF21 to regulate metabolic homeostasis.-Joe, Y., Kim, S., Kim, H. J., Park, J., Chen, Y., Park, H.-J., Jekal, S.-J., Ryter, S. W., Kim, U. H., Chung, H. T. FGF21 induced by carbon monoxide mediates metabolic homeostasis via the PERK/ATF4 pathway.
Insights
Carbon monoxide (CO) alleviates metabolic dysfunction by inducing fibroblast growth factor 21 (FGF21) via the PERK/ATF4 pathway. This process improves insulin sensitivity and reduces obesity-related issues.
Area of Science:
- Metabolic disease research
- Molecular biology
- Gaseous signaling molecules
Background:
- Metabolic syndrome prevalence is rising, with underlying mechanisms poorly understood.
- Carbon monoxide (CO) has known anti-inflammatory effects but its role in metabolic disease is unexplored.
Purpose of the Study:
- To investigate the effects of CO on metabolic dysfunction.
- To elucidate the molecular pathways through which CO influences metabolic homeostasis.
Main Methods:
- In vivo and in vitro studies using hepatocytes and liver models.
- Analysis of the PERK/eIF2α-ATF4 signaling pathway.
- Assessment of CO's impact on glucose levels, insulin sensitivity, and adipose tissue browning.
Main Results:
- CO increased fibroblast growth factor 21 (FGF21) expression in liver cells via the PERK/eIF2α-ATF4 pathway.
- CO-induced FGF21 attenuated hepatic steatosis caused by endoplasmic reticulum stress or diet-induced obesity.
- CO inhalation improved glucose control, insulin sensitivity, and energy expenditure by promoting beige adipose cell formation.
Conclusions:
- CO is a potent inducer of FGF21 expression.
- CO regulates metabolic homeostasis, largely dependent on FGF21 induction through the PERK/ATF4 pathway.
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