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Published on: October 28, 2019
Genetic and pharmacologic alteration of cathepsin expression influences reovirus pathogenesis
Elizabeth M Johnson1, Joshua D Doyle, J Denise Wetzel
1Department of Microbiology and Immunology, Vanderbilt University School of Medicine, Nashville, TN 37232, USA.
Abstract:
The cathepsin family of endosomal proteases is required for proteolytic processing of several viruses during entry into host cells. Mammalian reoviruses utilize cathepsins B (Ctsb), L (Ctsl), and S (Ctss) for disassembly of the virus outer capsid and activation of the membrane penetration machinery. To determine whether cathepsins contribute to reovirus tropism, spread, and disease outcome, we infected 3-day-old wild-type (wt), Ctsb(-/-), Ctsl(-/-), and Ctss(-/-) mice with the virulent reovirus strain T3SA+. The survival rate of Ctsb(-/-) mice was enhanced in comparison to that of wt mice, whereas the survival rates of Ctsl(-/-) and Ctss(-/-) mice were diminished. Peak titers at sites of secondary replication in all strains of cathepsin-deficient mice were lower than those in wt mice. Clearance of the virus was delayed in Ctsl(-/-) and Ctss(-/-) mice in comparison to the levels for wt and Ctsb(-/-) mice, consistent with a defect in cell-mediated immunity in mice lacking cathepsin L or S. Cathepsin expression was dispensable for establishment of viremia, but cathepsin L was required for maximal reovirus growth in the brain. Treatment of wt mice with an inhibitor of cathepsin L led to amelioration of reovirus infection. Collectively, these data indicate that cathepsins B, L, and S influence reovirus pathogenesis and suggest that pharmacologic modulation of cathepsin activity diminishes reovirus disease severity.
Insights
Cathepsins B, L, and S are crucial for reovirus replication and disease. Inhibiting cathepsin L in wild-type mice reduced reovirus infection severity, suggesting therapeutic potential.
Area of Science:
- Virology
- Immunology
- Biochemistry
Background:
- Endosomal proteases called cathepsins are essential for viral entry into host cells.
- Mammalian reoviruses depend on cathepsins B (Ctsb), L (Ctsl), and S (Ctss) for outer capsid disassembly and membrane penetration.
Purpose of the Study:
- To investigate the role of cathepsins in reovirus tropism, spread, and disease outcome.
- To assess the impact of cathepsin deficiency on reovirus infection in mice.
Main Methods:
- Infection of wild-type (wt) and cathepsin-deficient (Ctsb(-/-), Ctsl(-/-), Ctss(-/-)) mice with reovirus strain T3SA+.
- Analysis of survival rates, viral titers, viral clearance, and cathepsin expression.
- Treatment of wt mice with a cathepsin L inhibitor.
Main Results:
- Ctsb(-/-) mice showed enhanced survival, while Ctsl(-/-) and Ctss(-/-) mice had diminished survival.
- Peak viral titers were lower in all cathepsin-deficient mice.
- Viral clearance was delayed in Ctsl(-/-) and Ctss(-/-) mice, indicating impaired cell-mediated immunity.
- Cathepsin L was essential for maximal reovirus replication in the brain.
- Cathepsin L inhibition ameliorated reovirus infection in wt mice.
Conclusions:
- Cathepsins B, L, and S significantly influence reovirus pathogenesis.
- Pharmacologic inhibition of cathepsin activity can reduce reovirus disease severity.
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