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1.
Apoptosis ; 17(5): 503-15, 2012 May.
Article in English | MEDLINE | ID: mdl-22246639

ABSTRACT

The TNF-R1 like receptor Fas is highly expressed on the plasma membrane of hepatocytes and plays an essential role in liver homeostasis. We recently showed that in collagen-cultured primary mouse hepatocytes, Fas stimulation triggers apoptosis via the so-called type I extrinsic signaling pathway. Central to this pathway is the direct caspase-8-mediated cleavage and activation of caspase-3 as compared to the type II pathway which first requires caspase-8-mediated Bid cleavage to trigger mitochondrial cytochrome c release for caspase-3 activation. Mathematical modeling can be used to understand complex signaling systems such as crosstalks and feedback or feedforward loops. A previously published model predicted a positive feedback loop between active caspases-3 and -8 in both type I and type II FasL signaling in lymphocytes and Hela cells, respectively. Here we experimentally tested this hypothesis in our hepatocytic type I Fas signaling pathway by using wild-type and XIAP-deficient primary hepatocytes and two recently characterized, selective caspase-3/-7 inhibitors (AB06 and AB13). Caspase-3/-7 activity assays and quantitative western blotting confirmed that fully processed, active p17 caspase-3 feeds back on caspase-8 by cleaving its partially processed p43 form into the fully processed p18 species. Our data do not discriminate if p18 positively or negatively influences FasL-induced apoptosis or is responsible for non-apoptotic aspects of FasL signaling. However, we found that caspase-3 also feeds back on Bid and degrades its own inhibitor XIAP, both events that may enhance caspase-3 activity and apoptosis. Thus, potent, selective caspase-3 inhibitors are useful tools to understand complex signaling circuitries in apoptosis.


Subject(s)
BH3 Interacting Domain Death Agonist Protein/metabolism , Caspase 3/metabolism , Caspase 8/metabolism , Hepatocytes/metabolism , Signal Transduction , X-Linked Inhibitor of Apoptosis Protein/metabolism , fas Receptor/metabolism , Animals , Apoptosis/drug effects , Caspase Inhibitors , Cells, Cultured , Cysteine Proteinase Inhibitors/pharmacology , Enzyme Activation , Fas Ligand Protein/physiology , Feedback, Physiological , Gene Knockout Techniques , Hepatocytes/drug effects , Hepatocytes/enzymology , Mice , Mice, Inbred C57BL , Mice, Knockout , Poly (ADP-Ribose) Polymerase-1 , Poly(ADP-ribose) Polymerases/metabolism , Primary Cell Culture , X-Linked Inhibitor of Apoptosis Protein/genetics
2.
Hepatology ; 48(6): 1942-53, 2008 Dec.
Article in English | MEDLINE | ID: mdl-19003879

ABSTRACT

UNLABELLED: Fas/CD95-induced apoptosis of hepatocytes in vivo proceeds through the so-called type II pathway, requiring the proapoptotic BH3-only Bcl-2 family member Bid for mitochondrial death signaling. Consequently, Bid-deficient mice are protected from anti-Fas antibody injection induced fatal hepatitis. We report the unexpected finding that freshly isolated mouse hepatocytes, cultured on collagen or Matrigel, become independent of Bid for Fas-induced apoptosis, thereby switching death signaling from type II to type I. In such in vitro cultures, Fas ligand (FasL) activates caspase-3 without Bid cleavage, Bax/Bak activation or cytochrome c release, and neither Bid ablation nor Bcl-2 overexpression is protective. The type II to type I switch depends on extracellular matrix adhesion, as primary hepatocytes in suspension die in a Bid-dependent manner. Moreover, the switch is specific for FasL-induced apoptosis as collagen-plated Bid-deficient hepatocytes are protected from tumor necrosis factor alpha/actinomycin D (TNFalpha/ActD)-induced apoptosis. CONCLUSION: Our data suggest a selective crosstalk between extracellular matrix and Fas-mediated signaling that favors mitochondria-independent type I apoptosis induction.


Subject(s)
Apoptosis/physiology , Hepatocytes/metabolism , Signal Transduction/physiology , fas Receptor/metabolism , Animals , BH3 Interacting Domain Death Agonist Protein/metabolism , Caspase 3/metabolism , Cell Adhesion/physiology , Cells, Cultured , Extracellular Matrix/metabolism , Fas Ligand Protein/metabolism , Hepatocytes/cytology , Mice , Mice, Knockout , Mitochondria, Liver/metabolism , Models, Animal , Tumor Necrosis Factor-alpha/metabolism , bcl-2 Homologous Antagonist-Killer Protein/metabolism
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