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Genetic Ablation of C/EBPα-p300 Pathway Blocks Development of Obese Pregnancy Associated Liver Disorders in Offspring
Margaret A Hanlon1, Ruhi Gulati1, Michael Johnston2
1Division of General and Thoracic Surgery, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio.
Insights
Maternal obesity can cause fatty liver disease in children. This study reveals the C/EBPα-p300 pathway is key, suggesting therapies targeting this pathway could prevent liver disease in offspring.
Area of Science:
- Hepatology
- Pediatric Gastroenterology
- Molecular Biology
Background:
- Nonalcoholic fatty liver disease (NAFLD) is a common pediatric liver condition linked to obesity.
- The specific mechanisms driving pediatric NAFLD, especially in offspring of obese mothers, remain unclear.
- This study investigates the role of the C/EBPα-p300 pathway in maternal obesity-induced fatty liver in offspring.
Purpose of the Study:
- To elucidate the role of the C/EBPα-p300 signaling pathway in the development of fatty liver in offspring exposed to maternal obesity.
- To determine how C/EBPα phosphorylation at Ser193 influences the formation of C/EBPα-p300 complexes and subsequent gene activation.
- To explore potential therapeutic targets for preventing obesity-associated pediatric liver disease.
Main Methods:
- Utilized wild-type (WT), C/EBPα-S193D, and C/EBPα-S193A mutant mouse models.
- Exposed female mice to a high-fat diet (HFD) before and during pregnancy.
- Offspring were maintained on either an HFD or a normal diet for 12 weeks to assess liver health outcomes.
Main Results:
- WT mice on HFD exhibited severe fatty liver, fibrosis, and increased liver proliferation, linked to C/EBPα phosphorylation and p300 complex formation.
- C/EBPα-S193A mutant mice on HFD did not develop these liver disorders, indicating Ser193 phosphorylation is critical.
- C/EBPα-S193D mutant mice showed accelerated Cdk4 activity and early-onset steatosis.
Conclusions:
- Identified an epigenetic mechanism involving the C/EBPα-p300 pathway in maternal obesity-associated pediatric liver disease.
- Demonstrated that C/EBPα phosphorylation at Ser193 is essential for HFD-induced liver pathology in offspring.
- Proposed inhibition of the Cdk4-ph-S193-C/EBPα-p300 pathway as a potential therapeutic strategy.
Background & Aims:
The obesity-associated nonalcoholic fatty liver disease represents a common cause of pediatric liver diseases, including the pediatric liver cancer hepatoblastoma. The mechanisms behind the development of fatty liver in children are not yet known. We examined the role of the C/EBPα-p300 pathway in the development of maternal obesity-associated fatty liver phenotype in offspring.
Methods:
Because the ability of C/EBPα to promote fatty liver phenotype is enhanced by CDK4-mediated phosphorylation of C/EBPα at Ser193 and subsequent formation of C/EBPα-p300 complexes, we used wild-type (WT) and C/EBPα-S193D and C/EBPα-S193A mutant mice to study the effects of maternal high-fat diet (HFD) on the liver health of offspring. The females of these mouse lines were fed an HFD before mating, and the pups were further subjected to either an HFD or a normal diet for 12 weeks.
Results:
WT female mice on the HFD before and during pregnancy and their subsequent offspring on the HFD had severe fatty liver, fibrosis, and an increased rate of liver proliferation. However, the HFD in C/EBPα-S193A mice did not cause development of these disorders. In HFD-HFD treated WT mice, C/EBPα is phosphorylated at Ser193 and forms complexes with p300, which activate expression of genes involved in development of fatty liver, fibrosis, and proliferation. However, S193A-C/EBPα mice do not have complexes of C/EBPα-S193A with p300, leading to a lack of activation of genes of fatty liver, fibrosis, and proliferation. The mutant C/EBPα-S193D mice have accelerated cdk4-dependent pathway and have developed steatosis at early stages.
Conclusions:
These studies identified the epigenetic cause of obese pregnancy-associated liver diseases and suggest a potential therapy based on inhibition of cdk4-ph-S193-C/EBPα-p300 pathway.
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