Related Experiment Video
Updated: May 13, 2026

Generation of a Rat Model of Acute Liver Failure by Combining 70% Partial Hepatectomy and Acetaminophen
Published on: November 27, 2019
Rac1 modulates acute and subacute genotoxin-induced hepatic stress responses, fibrosis and liver aging
A Bopp1, F Wartlick, C Henninger
1Department of Toxicology, Heinrich Heine University Düsseldorf, Düsseldorf, Germany.
Abstract:
To investigate the importance of the Ras-homologous GTPase Rac1 for the hepatic response to genotoxic insults and liver aging, rac1 was deleted in liver of mice by Mx1-Cre-based recombination. Knockout of rac1 caused complex changes in basal as well as doxorubicin and ionizing radiation-induced mRNA expression of various genotoxic stress response-related genes, including hspa1b, rad51, wrn and xpc. Rac1 deletion protected the liver from acute toxicity following doxorubicin treatment. Moreover, the level of S139 phosphorylated histone H2AX (γH2AX), which is indicative of DNA damage, and mRNA expression of pro-inflammatory (IL-6) and pro-fibrotic (CTGF, TGFβ, αSMA) factors were mitigated in rac1 knockout animals. By contrast, lack of rac1 promoted subacute hepatotoxicity, which was determined 3 weeks after injection of multiple low doses of doxorubicin by assaying the γH2AX level, mitotic index and pro-fibrotic gene expression. Regarding ionizing radiation, rac1 deficiency had no major effects on DNA damage induction or acute pro-inflammatory and pro-fibrotic stress responses. Mice lacking hepatic rac1 for extended period of time (15 months) revealed increased mRNA expression of fibrosis-related factors (CTGF, TGFβ, collagen, MMP1) and fibrotic tissue remodeling. In addition, protein expression of the senescence marker p16 was enhanced in the absence of rac1. Taken together, the data provide evidence that Rac1 is required for doxorubicin-induced DNA damage induction. It is also involved in both the acute and delayed inflammatory and fibrotic stress response in the liver following doxorubicin, but not ionizing radiation, treatment and, furthermore, protects against endogenous liver aging.
Insights
The GTPase Rac1 is crucial for liver response to DNA damage and aging. Its absence protects against acute doxorubicin toxicity but promotes delayed liver damage and aging.
Area of Science:
- Hepatology
- Molecular Biology
- Genotoxic Stress Response
Background:
- The Ras-homologous GTPase Rac1 plays roles in cellular signaling.
- Its specific function in the liver's response to genotoxic insults and aging is not fully understood.
Purpose of the Study:
- To investigate the role of hepatic Rac1 in response to genotoxic stress and liver aging.
- To determine the impact of Rac1 deletion on DNA damage, inflammation, fibrosis, and senescence.
Main Methods:
- Mice with liver-specific Rac1 deletion (using Mx1-Cre) were generated.
- Animals were treated with doxorubicin or ionizing radiation to induce genotoxic stress.
- Gene expression, DNA damage markers (γH2AX), inflammation, fibrosis, and senescence markers were analyzed.
Main Results:
- Rac1 deletion protected against acute doxorubicin toxicity by reducing DNA damage and inflammation.
- However, Rac1 deficiency promoted subacute hepatotoxicity and fibrosis following doxorubicin treatment.
- Liver-specific Rac1 deficiency accelerated aging phenotypes, including increased fibrosis and senescence markers.
- Rac1 deficiency had minimal impact on ionizing radiation-induced liver injury.
Conclusions:
- Rac1 is essential for doxorubicin-induced DNA damage and influences acute and delayed inflammatory and fibrotic responses.
- Rac1 protects the liver against aging and doxorubicin-induced subacute toxicity.
- Its role differs significantly between doxorubicin and ionizing radiation insults.
Related Concept Videos
Cirrhosis II: Pathophysiology
Regulation of the Unfolded Protein Response
