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Virally infected hepatocytes are resistant to perforin-dependent CTL effector mechanisms
M I Kafrouni1, G R Brown, D L Thiele
1Department of Internal Medicine, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390, USA.
Abstract:
Cell-mediated cytotoxicity plays an important role in the clearance of noncytopathic viruses from infected tissues. Perforin-dependent cytotoxic mechanisms have been noted to play an important role in the clearance of infections from multiple extrahepatic organs. In contrast, mice with defects in the Fas/Fas ligand (FasL)-mediated cytotoxicity pathway exhibit delayed clearance of adenovirus from the liver without apparent delay in the clearance of viral infections from extrahepatic organs. The present studies examined the role of cytotoxic effector mechanisms in intrahepatic immune responses to a replication-defective, recombinant beta-galactosidase-encoding adenovirus (AdCMV-lacZ). Delayed clearance of AdCMV-lacZ from the livers of FasL-defective B6.gld mice, but not perforin-deficient B6.pfp(-/-) mice, was noted despite no significant differences in initial hepatic CD8(+) T cell IFN-gamma or TNF responses or in activation of intrahepatic cytotoxic lymphocytes cells capable of killing AdCMV-lacZ-infected fibroblast targets. In contrast, AdCMV-lacZ-infected hepatocyte targets were far more sensitive to killing by intrahepatic cytotoxic lymphocytes from B6.pfp(-/-) than from B6.gld mice, and residual levels of virus-specific killing of hepatocyte targets by FasL-defective B6.gld CTL were blocked by TNF inhibition. These results suggest that inherent resistance of hepatocytes to cytotoxicity mediated by perforin-dependent mechanisms leaves Fas/FasL-dependent, cell-mediated cytotoxicity as the major pathway for CTL-mediated killing of virally infected hepatocytes and accounts for the more prominent role of perforin-independent anti-viral mechanisms in immune responses in the liver.
Insights
The Fas/Fas ligand pathway, not perforin, is crucial for clearing adenovirus from the liver. Hepatocytes are resistant to perforin but susceptible to FasL-mediated killing, highlighting this pathway
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Cell-mediated cytotoxicity is vital for clearing viral infections.
- Perforin-dependent mechanisms clear viruses from extrahepatic organs.
- Fas/Fas ligand (FasL) pathway defects delay liver adenovirus clearance.
Purpose of the Study:
- To investigate cytotoxic effector mechanisms in intrahepatic immune responses to adenovirus.
- To determine the roles of perforin and FasL in clearing AdCMV-lacZ from the liver.
Main Methods:
- Used replication-defective AdCMV-lacZ in FasL-defective (B6.gld) and perforin-deficient (B6.pfp(-/-)) mice.
- Assessed viral clearance, hepatic CD8(+) T cell responses (IFN-gamma, TNF), and cytotoxic lymphocyte (CTL) activity.
- Evaluated killing of AdCMV-lacZ-infected fibroblast and hepatocyte targets.
Main Results:
- Delayed AdCMV-lacZ clearance in FasL-defective mice, but not perforin-deficient mice.
- No significant differences in initial hepatic CD8(+) T cell IFN-gamma or TNF responses.
- Hepatocytes were more sensitive to killing by perforin-deficient CTLs than FasL-defective CTLs; TNF inhibition blocked residual killing in FasL-defective mice.
Conclusions:
- Hepatocytes' resistance to perforin-dependent cytotoxicity makes Fas/FasL-dependent cytotoxicity the primary CTL-mediated killing pathway for infected hepatocytes.
- This explains the greater importance of perforin-independent antiviral mechanisms in liver immune responses.
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