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Bile acids regulate cysteine catabolism and glutathione regeneration to modulate hepatic sensitivity to oxidative injury
Yifeng Wang, Jibiao Li, David Matye, Yuxia Zhang, Katie Dennis, Wen-Xing Ding, Tiangang Li
Yifeng Wang, Jibiao Li, David Matye, Yuxia Zhang, Katie Dennis, Wen-Xing Ding, Tiangang Li
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Research Article Hepatology Metabolism

Bile acids regulate cysteine catabolism and glutathione regeneration to modulate hepatic sensitivity to oxidative injury

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Abstract

Bile acids are signaling molecules that critically control hepatocellular function. Disrupted bile acid homeostasis may be implicated in the pathogenesis of chronic liver diseases. Glutathione is an important antioxidant that protects the liver against oxidative injury. Various forms of liver disease share the common characteristics of reduced cellular glutathione and elevated oxidative stress. This study reports a potentially novel physiological function of bile acids in regulating hepatic sulfur amino acid and glutathione metabolism. We found that bile acids strongly inhibited the cysteine dioxygenase type-1–mediated (CDO1-mediated) cysteine catabolic pathway via a farnesoid X receptor–dependent mechanism. Attenuating this bile acid repressive effect depleted the free cysteine pool and reduced the glutathione concentration in mouse liver. Upon acetaminophen challenge, cholestyramine-fed mice showed impaired hepatic glutathione regeneration capacity and markedly worsened liver injury, which was fully prevented by N-acetylcysteine administration. These effects were recapitulated in CDO1-overexpressing hepatocytes. Findings from this study support the importance of maintaining bile acid homeostasis under physiological and pathophysiological conditions, as altered hepatic bile acid signaling may negatively impact the antioxidant defense mechanism and sensitivity to oxidative injury. Furthermore, this finding provides a possible explanation for the reported mild hepatotoxicity associated with the clinical use of bile acid sequestrants in human patients.

Authors

Yifeng Wang, Jibiao Li, David Matye, Yuxia Zhang, Katie Dennis, Wen-Xing Ding, Tiangang Li

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Figure 6

Overexpression of CDO1 in primary mouse hepatocytes decreased cellular glutathione concentration and increased acetaminophen-induced cytotoxicity.

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Overexpression of CDO1 in primary mouse hepatocytes decreased cellular g...
(A) Western blotting. Primary mouse hepatocytes were infected with empty adenovirus (Ad-Null) or Ad-CDO1 for 16 hours. (B–D) On the same day of isolation, mouse hepatocytes were infected with Ad-Null or Ad-CDO1 (MOI = 10) in regular DMEM medium containing 100 μM cysteine. After 16 hours, cells were switched to DMEM without cysteine/cystine or with 100 μM cysteine and treated with 2.5 mM acetaminophen (APAP) for 3, 6, and 12 hours. (B and C) Primary mouse hepatocytes were stained with 1 μg/ml propidium iodide (PI, pink), and then fixed with 4% paraformaldehyde and stained with DAPI (blue). Scale bar: 200 μm. The percentage of PI-positive cells was determined with ImageJ software and expressed as mean ± SD. Ten to 40 images from 3 hepatocyte preparations were analyzed. (D) Measurement of cellular glutathione. Results represent mean ± SD of 6 assays from 2 hepatocyte preparations. *P < 0.05 versus Ad-Null + cysteine at the same time point; #P < 0.05 versus Ad-Null – cysteine at the same time point. Two-way ANOVA and Tukey’s post hoc test were used for all statistical analysis. CDO1, cysteine dioxygenase 1; CYP2E1, cytochrome p450 2E1.

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