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Neuroblastoma RAS viral oncogene homolog (N-RAS) deficiency aggravates liver injury and fibrosis
Kang Zheng1,2,3, Fengjie Hao1,2,4, Sandra Medrano-Garcia1,2
1Department of Immunology, Ophthalmology & ENT, Complutense University School of Medicine, Madrid, Spain.
Abstract:
Progressive hepatic damage and fibrosis are major features of chronic liver diseases of different etiology, yet the underlying molecular mechanisms remain to be fully defined. N-RAS, a member of the RAS family of small guanine nucleotide-binding proteins also encompassing the highly homologous H-RAS and K-RAS isoforms, was previously reported to modulate cell death and renal fibrosis; however, its role in liver damage and fibrogenesis remains unknown. Here, we approached this question by using N-RAS deficient (N-RAS-/-) mice and two experimental models of liver injury and fibrosis, namely carbon tetrachloride (CCl4) intoxication and bile duct ligation (BDL). In wild-type (N-RAS+/+) mice both hepatotoxic procedures augmented N-RAS expression in the liver. Compared to N-RAS+/+ counterparts, N-RAS-/- mice subjected to either CCl4 or BDL showed exacerbated liver injury and fibrosis, which was associated with enhanced hepatic stellate cell (HSC) activation and leukocyte infiltration in the damaged liver. At the molecular level, after CCl4 or BDL, N-RAS-/- livers exhibited augmented expression of necroptotic death markers along with JNK1/2 hyperactivation. In line with this, N-RAS ablation in a human hepatocytic cell line resulted in enhanced activation of JNK and necroptosis mediators in response to cell death stimuli. Of note, loss of hepatic N-RAS expression was characteristic of chronic liver disease patients with fibrosis. Collectively, our study unveils a novel role for N-RAS as a negative controller of the progression of liver injury and fibrogenesis, by critically downregulating signaling pathways leading to hepatocyte necroptosis. Furthermore, it suggests that N-RAS may be of potential clinical value as prognostic biomarker of progressive fibrotic liver damage, or as a novel therapeutic target for the treatment of chronic liver disease.
Insights
N-RAS protein deficiency exacerbates liver injury and fibrosis by promoting hepatocyte necroptosis. Loss of N-RAS is linked to human fibrotic liver disease, suggesting its potential as a biomarker or therapeutic target.
Area of Science:
- Hepatology
- Molecular Biology
- Fibrosis Research
Background:
- Chronic liver diseases involve progressive hepatic damage and fibrosis.
- The role of N-RAS in liver injury and fibrogenesis is currently unknown.
- N-RAS is a member of the RAS family of small guanine nucleotide-binding proteins.
Purpose of the Study:
- To investigate the role of N-RAS in liver injury and fibrogenesis.
- To determine the molecular mechanisms by which N-RAS influences liver damage.
- To assess the clinical relevance of N-RAS in chronic liver disease patients.
Main Methods:
- Utilized N-RAS deficient (N-RAS-/-) mice and wild-type (N-RAS+/+) mice.
- Employed carbon tetrachloride (CCl4) intoxication and bile duct ligation (BDL) models of liver injury.
- Analyzed hepatic stellate cell activation, leukocyte infiltration, necroptosis markers, and JNK1/2 signaling.
Main Results:
- N-RAS deficiency exacerbated liver injury and fibrosis in mouse models.
- N-RAS-/- mice showed enhanced hepatic stellate cell activation and leukocyte infiltration.
- N-RAS deficiency led to augmented necroptosis markers and JNK1/2 hyperactivation in the liver.
- Loss of hepatic N-RAS expression was observed in human chronic liver disease patients with fibrosis.
Conclusions:
- N-RAS acts as a negative regulator of liver injury and fibrogenesis progression.
- N-RAS downregulates signaling pathways involved in hepatocyte necroptosis.
- N-RAS may serve as a prognostic biomarker or therapeutic target for chronic liver diseases.
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