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JCAD deficiency delayed liver regenerative repair through the Hippo-YAP signalling pathway
Li Zhang1, Yong-Yu Yang1, Li Xie1
1Department of Medical Microbiology & Parasitology, MOE/NHC/CAMS Key Laboratory of Medical Molecular Virology, School of Basic Medical Sciences, Fudan University Shanghai Medical College, Shanghai, China.
Background And Aims:
Liver regeneration retardation post partial hepatectomy (PH) is a common clinical problem after liver transplantation. Identification of key regulators in liver regeneration post PH may be beneficial for clinically improving the prognosis of patients after liver transplantation. This study aimed to clarify the function of junctional protein-associated with coronary artery disease (JCAD) in liver regeneration post PH and to reveal the underlying mechanisms.
Methods:
JCAD knockout (JCAD-KO), liver-specific JCAD-KO (Jcad△Hep) mice and their control group were subjected to 70% PH. RNA sequencing was conducted to unravel the related signalling pathways. Primary hepatocytes from KO mice were treated with epidermal growth factor (EGF) to evaluate DNA replication. Fluorescent ubiquitination-based cell cycle indicator (FUCCI) live-imaging system was used to visualise the phases of cell cycle.
Results:
Both global and liver-specific JCAD deficiency postponed liver regeneration after PH as indicated by reduced gene expression of cell cycle transition and DNA replication. Prolonged retention in G1 phase and failure to transition over the cell cycle checkpoint in JCAD-KO cell line was indicated by a FUCCI live-imaging system as well as pharmacologic blockage. JCAD replenishment by adenovirus reversed the impaired DNA synthesis in JCAD-KO primary hepatocyte in exposure to EGF, which was abrogated by a Yes-associated protein (YAP) inhibitor, verteporfin. Mechanistically, JCAD competed with large tumour suppressor 2 (LATS2) for WWC1 interaction, leading to LATS2 inhibition and thereafter YAP activation, and enhanced expression of cell cycle-associated genes.
Conclusion:
JCAD deficiency led to delayed regeneration after PH as a result of blockage in cell cycle progression through the Hippo-YAP signalling pathway. These findings uncovered novel functions of JCAD and suggested a potential strategy for improving graft growth and function post liver transplantation.
Key Points:
JCAD deficiency leads to an impaired liver growth after PH due to cell division blockage. JCAD competes with LATS2 for WWC1 interaction, resulting in LATS2 inhibition, YAP activation and enhanced expression of cell cycle-associated genes. Delineation of JCADHippoYAP signalling pathway would facilitate to improve prognosis of acute liver failure and graft growth in living-donor liver transplantation.
Insights
Junctional protein-associated with coronary artery disease (JCAD) deficiency delays liver regeneration after partial hepatectomy by blocking cell cycle progression. Restoring JCAD promotes DNA synthesis, offering a potential strategy for liver transplantation.
Area of Science:
- Hepatology
- Molecular Biology
- Regenerative Medicine
Background:
- Liver regeneration retardation post partial hepatectomy (PH) is a significant clinical challenge, particularly after liver transplantation.
- Identifying key regulators of liver regeneration is crucial for improving patient outcomes.
- This study investigates the role of junctional protein-associated with coronary artery disease (JCAD) in liver regeneration post-PH.
Purpose of the Study:
- To elucidate the function of JCAD in liver regeneration following partial hepatectomy.
- To uncover the underlying molecular mechanisms by which JCAD influences liver regeneration.
- To explore JCAD as a potential therapeutic target for enhancing liver recovery.
Main Methods:
- Utilized JCAD knockout (JCAD-KO) and liver-specific JCAD-KO (Jcad△Hep) mouse models subjected to 70% PH.
- Employed RNA sequencing to identify key signaling pathways involved in regeneration.
- Assessed hepatocyte DNA replication using primary hepatocytes and cell cycle progression via FUCCI live-imaging.
Main Results:
- Both global and liver-specific JCAD deficiency significantly postponed liver regeneration post-PH.
- JCAD deficiency resulted in prolonged G1 phase retention and impaired cell cycle checkpoint transition.
- JCAD replenishment restored DNA synthesis, mediated by the Hippo-YAP signaling pathway, involving LATS2 inhibition and YAP activation.
Conclusions:
- JCAD deficiency impairs liver regeneration after PH by blocking cell cycle progression via the Hippo-YAP pathway.
- JCAD plays a critical role in regulating hepatocyte proliferation and liver regrowth.
- Targeting the JCAD-Hippo-YAP signaling pathway presents a novel strategy to improve graft function and outcomes in liver transplantation.
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