The Knockout of Rap1 Accelerates Liver Regeneration After Transplantation.
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Le résumé fourni par la source
Introduction and aim: Impaired of liver regeneration severe affects the tissue repair following liver surgery. Cytokine, growth factor and metabolic networks play important roles in theprogression of liver regeneration. Rap1 is a part of the shelterin complex at mammalian telomeres, involved in protecting chromosome ends and promoting gene silencing. Recent research revealed its novel roles in the regulation of metabolism andinflammatory response through binding to extra-telomeric sites. We recently also showed that the knockout of Rap1 attenuated liver graft injury after transplantation. Here, we aimed to investigate the role of Rap1 in liver regeneration and to explore underlying mechanism. Methods:Clinically, the intragraft Rap1 expression and its correlation among liver function, inflammatory cytokines/chemokines, and macrophage infiltration were analyzed in human liver graft biopsies after transplantation. To investigate the direct role of Rap1 in hepatocyte proliferation and liver regeneration, Rap1 knockoutand wild type mice were subjected to major hepatectomy plus partial hepatic ischemia/reperfusion injury (IRI). Mouse hepatocyte proliferation, histological damage, liver function and gene expressions were compared between Rap1 knockoutand wild type group. Results: Intrahepatic Rap1 expression was increased in small-for-size graft in comparison to normal graft (2.9 vs 1.9 folds of normal liver, p<0.05), and associated with higher expressions of inflammatory cytokines/chemokines and more infiltrations of macrophage and neutrophil at 2 hours after transplantation. Furthermore, overexpression of Rap1 was significantly correlated with impaired liver function after transplantation (ALT: day 1, 3, 4 p<0.05; AST: day 0, 3, 4, 5 p<0.05). In mouse model, the knockout of Rap1 significantly accelerated liver regeneration at day 2 after major hepatectomy and hepatic IRI compared to wild type group (Ki67: 56 vs 11/HPF, p<0.05; PCNA: 46 vs 29/HPF, p<0.05). The knockout of Rap1 also attenuated histological damage and liver function. Furthermore, reduced expression of PPAR-α and increased expressions of G0S2 and IL1β were detected in Rap1 knockout mice. Conclusion: The knockout of Rap1 accelerates liver regeneration and associated with the regulation of cell cycle control, PPAR-α and cytokine signaling.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- The Knockout of Rap1 Accelerates Liver Regeneration After Transplantation.
- Date Crossref
- 01/07/2014
- Éditeur
- Ovid Technologies (Wolters Kluwer Health)
- Type
- journal-article
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