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Bidgood, S. R.

Publications and source records attributed to Bidgood, S. R..

2 recordsLinked to original sources

Poxviruses package viral redox proteins in lateral bodies and modulate the host oxidative response

All poxviruses contain a set of proteinaceous structures termed lateral bodies (LB) that deliver viral effector proteins into the host cytosol during virus entry. To date, the spatial proteotype of LBs remains unknown. Using the prototypic poxvirus, vaccinia virus (VACV), we employed a quantitative comparative mass spectrometry strategy to determine the poxvirus LB proteome. We identified a large population of cellular proteins, the majority being mitochondrial, and 15 viral LB proteins. Strikingly, one-third of these comprise the full set of VACV redox proteins whose LB residency could be confirmed using super-resolution microscopy. We further show that VACV infection exerts an anti-oxidative effect on host cells and that artificial induction of oxidative stress impacts early gene expression and virion production. In addition to defining the spatial proteotype of these enigmatic viral structures, these findings implicate poxvirus redox proteins as modulators of host oxidative anti-viral responses and provide a solid starting point for future investigations into the role of LB resident proteins in host immunomodulation.

microbiology

Modulation of early host innate immune response by a Fowlpox virus (FWPV) lateral body protein

The avian pathogen, fowlpox virus (FWPV) has been successfully used as vaccine vector in poultry and humans but relatively little is known about its ability to modulate host antiviral immune responses in these hosts, which are replication permissive and non-permissive, respectively. FWPV is highly resistant to avian type I interferon (IFN) and able to completely block the host IFN-response. Microarray screening of host IFN-regulated gene expression in cells infected with 59 different, non-essential FWPV gene knock-out mutants revealed that FPV184 confers immunomodulatory capacity. We report that FPV184-knockout virus (FWPV{Delta}184) induces the cellular IFN response as early as 2 hours post-infection. The wild-type, uninduced phenotype can be rescued by transient expression of FPV184 in FWPV{Delta}184-infected cells. Ectopic expression of FPV184 inhibited polyI:C activation of the chicken IFN-{beta} promoter and IFN- activation of the chicken Mx promoter. Confocal and correlative super-resolution light and electron microscopy demonstrated that FPV184 has a functional nuclear localisation signal domain and is packaged in the lateral bodies of the virions. Taken together, these results provide a paradigm for a late poxvirus structural protein packaged in the lateral bodies and capable of supressing IFN induction early during the next round of infection.

microbiology