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Published on: June 25, 2015
Myxoma Virus M083 Is a Virulence Factor Which Mediates Systemic Dissemination
A M Wolfe1, K M Dunlap2, A C Smith1
1Department of Comparative Medicine, Medical University of South Carolina, Charleston, South Carolina, USA.
Abstract:
Poxviruses are large, DNA viruses whose protein capsid is surrounded by one or more lipid envelopes. Embedded into these lipid envelopes are three conserved viral proteins which are thought to mediate binding of virions to target cells. While the function of these proteins has been studied in vitro, their specific roles during the pathogenesis of poxviral disease remain largely unclear. Here we present data demonstrating that the putative chondroitin binding protein M083 from the leporipoxvirus myxoma virus is a significant virulence factor during infection of susceptible Oryctolagus rabbits. Removal of M083 results in a reduced capacity of virus to spread beyond the regional lymph nodes and completely eliminates infection-mediated mortality. In vitro, removal of M083 results in only minor intracellular replication defects but causes a significant reduction in the ability of myxoma virus to spread from infected epithelial cells onto primary lymphocytes. We hypothesize that the physiological role of M083 is therefore to mediate the spread of myxoma virus onto rabbit lymphocytes, allowing these cells to disseminate virus throughout infected rabbits.IMPORTANCE Poxviruses represent both a class of human pathogens and potential therapeutic agents for the treatment of human malignancy. Understanding the basic biology of these agents is therefore significant to human health in a variety of ways. While the mechanisms mediating poxviral binding have been well studied in vitro, how these mechanisms impact poxviral pathogenesis in vivo remains unclear. The current study advances our understanding of how poxviral binding impacts viral pathogenesis by demonstrating that the putative chondroitin binding protein M083 plays a critical role during the pathogenesis of myxoma virus in susceptible Oryctolagus rabbits by impacting viral dissemination through changes in the transfer of virions onto primary splenocytes.
Insights
The myxoma virus protein M083 is crucial for virulence in rabbits. Removing M083 significantly reduces viral spread and eliminates mortality by affecting virus transfer to lymphocytes.
Area of Science:
- Virology
- Immunology
- Pathogenesis
Background:
- Poxviruses utilize envelope proteins for cell binding, but their in vivo roles are unclear.
- Understanding poxviral pathogenesis is vital for human health, considering their roles as pathogens and therapeutic agents.
Purpose of the Study:
- To investigate the role of myxoma virus protein M083 in virulence and pathogenesis in rabbits.
- To elucidate the in vitro and in vivo functions of M083 in viral dissemination.
Main Methods:
- Generation of M083-deficient myxoma virus.
- In vitro replication and cell-to-cell spread assays.
- In vivo infection studies in susceptible Oryctolagus rabbits.
Main Results:
- M083-deficient virus showed reduced spread beyond lymph nodes and no mortality in rabbits.
- In vitro, M083 absence caused minor replication defects but significantly impaired spread to lymphocytes.
- M083 mediates the transfer of myxoma virus from epithelial cells to lymphocytes.
Conclusions:
- Myxoma virus protein M083 is a key virulence factor in rabbits.
- M083 facilitates viral dissemination by enabling spread to lymphocytes, impacting overall pathogenesis.
- This study clarifies the in vivo significance of poxviral envelope proteins in disease progression.
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