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Hepatic glutathione depletion ameliorates MASLD through selective protein oxidation and inhibition of lipogenesis
Xiang-Yu Liu, Guoxiao Wang, Yingying Yu, Haopeng Xiao, Kentaro Oh-hashi, Xu Shi, Shuning Zheng, Robert Gerszten, C. Ronald Kahn
Xiang-Yu Liu, Guoxiao Wang, Yingying Yu, Haopeng Xiao, Kentaro Oh-hashi, Xu Shi, Shuning Zheng, Robert Gerszten, C. Ronald Kahn
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Research Article Cell biology Hepatology Metabolism

Hepatic glutathione depletion ameliorates MASLD through selective protein oxidation and inhibition of lipogenesis

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Abstract

Glutathione (GSH) maintains a reduced cellular environment and is widely believed to mitigate disease-associated oxidative damage to proteins, thereby protecting against metabolic dysfunction–associated steatotic liver disease (MASLD). However, this widely accepted assumption remains largely untested because of challenges in physiologically manipulating hepatic GSH levels during disease development. Here, we have utilized liver-specific overexpression of cation transport regulator homolog 1 (Chac1), a recently identified intracellular GSH-degrading enzyme, to induce hepatic GSH depletion during MASLD progression. Contrary to canonical doctrine, GSH depletion unexpectedly protects against MASLD by substantially decreasing hepatic lipogenesis and fibrosis without triggering an oxidative stress response. Mechanistically, GSH depletion does not cause global protein oxidation but instead selectively oxidizes and destabilizes fatty acid synthase while decreasing lipogenic gene expression at the transcriptional level, collectively suppressing lipogenesis. Interestingly, Chac1 expression is decreased in livers of patients with MASLD, highlighting its potential therapeutic relevance. These findings revise the conventional view of GSH in protein redox and demonstrate that targeted redox manipulation through GSH depletion protects against MASLD.

Authors

Xiang-Yu Liu, Guoxiao Wang, Yingying Yu, Haopeng Xiao, Kentaro Oh-hashi, Xu Shi, Shuning Zheng, Robert Gerszten, C. Ronald Kahn

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Figure 1

Hepatic GSH depletion improves insulin sensitivity.

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Hepatic GSH depletion improves insulin sensitivity.
(A) The role of GSH ...
(A) The role of GSH and its depletion by Chac1. Cys-Gly, cysteinylglycine; ROS, reactive oxygen species. (B) Liver-specific Chac1 overexpression using AAV8. (C) Overexpression of Chac1 in liver assessed by immunoblot. (D) Metabolomic analysis on livers from control and hepatic GSH-depleted mice (n = 7). (E) Cumulative food intake by control or GSH-depleted mice (n = 6). (F) Body weights of mice after AAV injection (n = 9–11). (G) Respiratory exchange ratio of mice measured by metabolic cage (n = 6). (H and I) Blood glucose levels of mice after overnight fasting (H, n = 9–11) or during an insulin tolerance test (I, n = 8–10). (J and K) Relative levels of serum insulin and glucagon of mice during fasting (J) or after glucose injection (K) assessed using ELISA (insulin ELISA: Crystal Chem, 90080; glucagon ELISA: Crystal Chem, 81518). (L and M) Percentage of hepatic insulin action (L) and whole-body glycogen synthesis rate (M) of mice during hyperinsulinemic-euglycemic clamps (n = 7–9). *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001. GSH-dep, GSH depletion.

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

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