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Generation of a Rat Model of Acute Liver Failure by Combining 70% Partial Hepatectomy and Acetaminophen
Published on: November 27, 2019
Impaired Ras membrane association and activation in PPARalpha knockout mice after partial hepatectomy
Michael D Wheeler1, Olivia M Smutney, Jennifer F Check
1Laboratory of Hepatobiology and Toxicology, Department of Pharmacology, Curriculum in Toxicology, School of Medicine, University of North Carolina, Chapel Hill, North Carolina 27599, USA. wheelmi@med.unc.edu
Abstract:
Liver regeneration after partial hepatectomy (PH) involves several signaling mechanisms including activation of the small GTPases Ras and RhoA in response to mitogens leading to DNA synthesis and cell proliferation. Peroxisome proliferator-activated receptor-alpha (PPARalpha) regulates the expression of several key enzymes in isoprenoid synthesis, which are key events for membrane association of Ras and RhoA. Thus the role of PPARalpha in cell proliferation after PH was tested. After PH, an increase in PPARalpha DNA binding was observed in wild-type mice, correlating with an increase in the PPARalpha-regulated enzyme acyl-CoA oxidase. In addition, the PPARalpha-regulated genes farnesyl pyrophosphate synthase and 3-hydroxy-3-methylglutaryl-coenzyme A (HMG-CoA) synthase were significantly increased in wild-type mice. However, these increases were not observed in PPARalpha knockout (PPARalpha -/-) mice. The peak in DNA synthesis observed 42 h after PH was reduced by approximately 60% in PPARalpha -/- mice, despite increases in TNF-alpha and IL-1. Also, under these conditions, membrane association of Ras was high in wild-type mice after PH but was impaired in PPARalpha -/- mice. Accordingly, Ras was significantly elevated in the cytosol in PPARalpha -/- mice. This observation correlated with lower levels of active GTP-bound Ras after PH in PPARalpha -/- mice compared with wild-type mice. Similar observations were made for RhoA. Moreover, deletion of PPARalpha blunted the activation of cyclin-dependent kinase (cdk)2/cyclin E and cdk4/cyclin D complexes. Collectively, these results support the hypothesis that PPARalpha is necessary for cell cycle progression in regenerating mouse liver via mechanisms involving prenylation of small GTPases Ras and RhoA.
Insights
Peroxisome proliferator-activated receptor-alpha (PPARalpha) is crucial for liver regeneration after partial hepatectomy. PPARalpha deficiency impairs cell proliferation by affecting small GTPase activation and cell cycle progression.
Area of Science:
- Hepatology
- Molecular Biology
- Cell Signaling
Background:
- Liver regeneration involves complex signaling pathways, including small GTPases Ras and RhoA.
- Peroxisome proliferator-activated receptor-alpha (PPARalpha) influences isoprenoid synthesis, essential for GTPase membrane association.
Purpose of the Study:
- To investigate the role of PPARalpha in liver cell proliferation following partial hepatectomy (PH).
Main Methods:
- Comparison of liver regeneration in wild-type and PPARalpha knockout (PPARalpha -/-) mice after PH.
- Analysis of PPARalpha target gene expression, DNA synthesis, GTPase activation, and cell cycle complex formation.
Main Results:
- PPARalpha knockout mice showed reduced DNA synthesis and impaired membrane association of Ras and RhoA.
- Activation of cyclin-dependent kinases (cdk)2/cyclin E and cdk4/cyclin D was blunted in PPARalpha -/- mice.
- PPARalpha deficiency hindered liver regeneration despite increased inflammatory cytokines.
Conclusions:
- PPARalpha is essential for liver regeneration post-PH.
- PPARalpha facilitates cell cycle progression through the prenylation of small GTPases Ras and RhoA.

