4.7 Article

RIPK1 protects from TNF-α-mediated liver damage during hepatitis

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CELL DEATH & DISEASE
卷 7, 期 -, 页码 -

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/cddis.2016.362

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资金

  1. Inserm
  2. Ministere de l'Education Nationale de la Recherche et de la Technologie
  3. University of Rennes 1
  4. Region Bretagne
  5. INCa (Institut national du cancer)
  6. Ligue contre le cancer, comites du grand Ouest
  7. Belgian grants (Interuniversity Attraction Poles) [IAP 7/32]
  8. Flemish grants (Research Foundation Flanders) [FWO G.0875.11, FWO G.0973.11, FWO G.0A45.12N, FWO G.0172.12, FWO G.0787.13N, FWO G.0607.13N, FWO KAN 31528711, FWO KAN 1504813N, FWO G0E04.16N]
  9. Methusalem grant [BOF16/MET_V/007, BOF09/01M00709]
  10. Ghent University grants (MRP, GROUP-ID consortium) [BOFGOA2014000702]
  11. Foundation against Cancer [F94]
  12. VIB
  13. Government of Pakistan (Higher Education Commission, University of Agriculture, Lahore)

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Cell death of hepatocytes is a prominent characteristic in the pathogenesis of liver disease, while hepatolysis is a starting point of inflammation in hepatitis and loss of hepatic function. However, the precise molecular mechanisms of hepatocyte cell death, the role of the cytokines of hepatic microenvironment and the involvement of intracellular kinases, remain unclear. Tumor necrosis factor alpha (TNF-alpha) is a key cytokine involved in cell death or survival pathways and the role of RIPK1 has been associated to the TNF-alpha-dependent signaling pathway. We took advantage of two different deficient mouse lines, the RIPK1 kinase dead knock-in mice (Ripk1K45A) and the conditional knockout mice lacking RIPK1 only in liver parenchymal cells (Ripk1LPC-KO), to characterize the role of RIPK1 and TNF-alpha in hepatitis induced by concanavalin A (ConA). Our results show that RIPK1 is dispensable for liver homeostasis under steady-state conditions but in contrast, RIPK1 kinase activity contributes to caspase-independent cell death induction following ConA injection and RIPK1 also serves as a scaffold, protecting hepatocytes from massive apoptotic cell death in this model. In the Ripk1LPC-KO mice challenged with ConA, TNF-alpha triggers apoptosis, responsible for the observed severe hepatitis. Mechanism potentially involves both TNF-independent canonical NF-kappa B activation, as well as TNF-dependent, but canonical NF-kappa B-independent mechanisms. In conclusion, our results suggest that RIPK1 kinase activity is a pertinent therapeutic target to protect liver against excessive cell death in liver diseases.

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