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Combined Systemic Disruption of MET and Epidermal Growth Factor Receptor Signaling Causes Liver Failure in Normal
Anastasia Tsagianni1, Wendy M Mars1, Bharat Bhushan1
1Department of Pathology, School of Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania.
Abstract:
MET and epidermal growth factor receptor (EGFR) tyrosine kinases are crucial for liver regeneration and normal hepatocyte function. Recently, we demonstrated that in mice, combined inhibition of these two signaling pathways abolished liver regeneration after hepatectomy, with subsequent hepatic failure and death at 15 to 18 days after resection. Morbidity was associated with distinct and specific alterations in important downstream signaling pathways that led to decreased hepatocyte volume, reduced proliferation, and shutdown of many essential hepatocyte functions, such as fatty acid synthesis, urea cycle, and mitochondrial functions. Herein, we explore the role of MET and EGFR signaling in resting mouse livers that are not subjected to hepatectomy. Mice with combined disruption of MET and EGFR signaling were noticeably sick by 10 days and died at 12 to 14 days. Mice with combined disruption of MET and EGFR signaling mice showed decreased liver/body weight ratios, increased apoptosis in nonparenchymal cells, impaired liver metabolic functions, and activation of distinct downstream signaling pathways related to inflammation, cell death, and survival. The present study demonstrates that, in addition to controlling the regenerative response, MET and EGFR synergistically control baseline liver homeostasis in normal mice in such a way that their combined disruption leads to liver failure and death.
Insights
Combined disruption of MET and epidermal growth factor receptor (EGFR) signaling causes liver failure in mice. This highlights their crucial role in maintaining normal liver function and homeostasis.
Area of Science:
- Hepatology
- Molecular Biology
- Signaling Pathways
Background:
- MET and epidermal growth factor receptor (EGFR) are vital tyrosine kinases for liver regeneration and hepatocyte function.
- Previous studies showed combined inhibition abolished liver regeneration, leading to hepatic failure and death post-hepatectomy.
Purpose of the Study:
- To investigate the role of MET and EGFR signaling in resting mouse livers without hepatectomy.
- To understand the synergistic control of MET and EGFR on baseline liver homeostasis.
Main Methods:
- Combined disruption of MET and EGFR signaling in mice.
- Assessment of liver/body weight ratios, apoptosis, metabolic functions, and downstream signaling pathways.
Main Results:
- Combined MET and EGFR disruption led to sickness and death within 12-14 days.
- Observed decreased liver/body weight ratios, increased nonparenchymal cell apoptosis, and impaired metabolic functions.
- Distinct downstream signaling pathways related to inflammation, cell death, and survival were activated.
Conclusions:
- MET and EGFR signaling are essential for maintaining baseline liver homeostasis in normal mice.
- Synergistic disruption of MET and EGFR signaling leads to liver failure and mortality, independent of regenerative stress.
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