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Published on: October 7, 2011
A pox on thee! Manipulation of the host immune system by myxoma virus and implications for viral-host co-adaptation
1Department of Molecular, Cellular, and Developmental Biology, Sinsheimer Laboratories, University of California Santa Cruz, Santa Cruz, CA 95064, USA. zuniga@darwin.ucsc.edu
Abstract:
The poxviruses have evolved a diverse array of proteins which serve to subvert innate and adaptive host responses that abort or at least limit viral infections. Myxoma virus and its rabbit host are considered to represent an ideal poxvirus-host system in which to study the effects of these immunomodulatory proteins. Studies of laboratory rabbits (Oryctolagus cuniculus) infected with gene knockout variants of myxoma virus have provided compelling evidence that several myxoma virus gene products contribute to the pathogenic condition known as myxomatosis. However, myxomatosis, which is characterized by skin lesions, systemic immunosuppression, and a high mortality rate, does not occur in the virus' natural South American host, Sylvilogus brasiliensis. Moreover, in Australia where myxoma virus was willfully introduced to control populations of O. cuniculus, myxomatosis-resistant rabbits emerged within a year of myxoma virus introduction into the field. In this review I discuss the characterized immunomodulatory proteins of myxoma virus, their biochemical properties, their pathogenic effects in laboratory rabbits, the role of the host immune system in the susceptibility or resistance to myxomatosis, and the evidence that immunomodulatory genes may have been attenuated during the co-adaptation of myxoma virus and O. cuniculus in Australia.
Insights
Myxoma virus uses immunomodulatory proteins to cause disease in rabbits. Host immune responses and viral gene attenuation influence myxomatosis susceptibility and resistance.
Area of Science:
- Virology
- Immunology
- Host-pathogen interactions
Background:
- Poxviruses, including myxoma virus, possess proteins that evade host immune responses.
- Myxoma virus and rabbits (Oryctolagus cuniculus) serve as a model for studying viral immunomodulation.
- Myxomatosis is a severe disease in laboratory rabbits, but not in the virus's natural host.
Purpose of the Study:
- To review myxoma virus immunomodulatory proteins.
- To discuss their pathogenic effects and host immune system roles.
- To explore viral gene attenuation during host-pathogen co-adaptation.
Main Methods:
- Review of characterized myxoma virus immunomodulatory proteins.
- Analysis of gene knockout variants in laboratory rabbits.
- Examination of host immune responses in susceptibility and resistance.
Main Results:
- Several myxoma virus gene products contribute to myxomatosis pathogenesis in laboratory rabbits.
- Natural South American rabbit hosts (Sylvilogus brasiliensis) are resistant to myxomatosis.
- Rabbit populations in Australia developed resistance to myxoma virus rapidly.
Conclusions:
- Host immune system and viral immunomodulatory proteins are key determinants of myxomatosis.
- Co-evolution may lead to attenuation of viral virulence factors.
- Understanding these interactions is crucial for poxvirus-host dynamics.
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