Mutational analysis of the dsRNA binding domain of Vaccinia Virus E3 protein

Vaccinia virus E3 protein is known to bind double-stranded RNA and mediate interferon resistance. Alanine scanning mutagenesis was performed on its dsRNA binding domain, sufficient for wild-type tropism and immune suppression in vitro, and dsRNA binding and host range function assayed. Residues in...

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Main Author: Dick, Kevin James
Other Authors: Cao, Jingxin (Medical Microbiology)
Published: 2011
Subjects:
Online Access:http://hdl.handle.net/1993/4852
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-MWU.1993-48522014-03-29T03:43:47Z Mutational analysis of the dsRNA binding domain of Vaccinia Virus E3 protein Dick, Kevin James Cao, Jingxin (Medical Microbiology) Babiuk, Shawn (Immunology) Yao, Xiao-Jian (Medical Microbiology) Virology Innate Immunity Poxvirus Vaccinia virus E3 protein is known to bind double-stranded RNA and mediate interferon resistance. Alanine scanning mutagenesis was performed on its dsRNA binding domain, sufficient for wild-type tropism and immune suppression in vitro, and dsRNA binding and host range function assayed. Residues involved in dsRNA binding were required for host range function; however, seven dsRNA binding mutants were unable to rescue ΔE3L replication. Utilizing recombinant viruses, non-rescue mutants were unable to inhibit protein Kinase R phosphorylation despite dsRNA binding. Furthermore, host range was found to correlate with cytokine suppression and replication in IFN stimulated Huh7R cells. Additionally, no direct association was found between dsRNA binding and PKR interaction, refining the suppression model. Novel protein-protein interactions were discovered between E3 and cellular proteins via differential gel electrophoresis. This study represents the first full mapping of E3 residues involved in dsRNA binding and tropism, forming a basis for future study. 2011-09-08T14:56:10Z 2011-09-08T14:56:10Z 2011-09-08 http://hdl.handle.net/1993/4852
collection NDLTD
sources NDLTD
topic Virology
Innate Immunity
Poxvirus
spellingShingle Virology
Innate Immunity
Poxvirus
Dick, Kevin James
Mutational analysis of the dsRNA binding domain of Vaccinia Virus E3 protein
description Vaccinia virus E3 protein is known to bind double-stranded RNA and mediate interferon resistance. Alanine scanning mutagenesis was performed on its dsRNA binding domain, sufficient for wild-type tropism and immune suppression in vitro, and dsRNA binding and host range function assayed. Residues involved in dsRNA binding were required for host range function; however, seven dsRNA binding mutants were unable to rescue ΔE3L replication. Utilizing recombinant viruses, non-rescue mutants were unable to inhibit protein Kinase R phosphorylation despite dsRNA binding. Furthermore, host range was found to correlate with cytokine suppression and replication in IFN stimulated Huh7R cells. Additionally, no direct association was found between dsRNA binding and PKR interaction, refining the suppression model. Novel protein-protein interactions were discovered between E3 and cellular proteins via differential gel electrophoresis. This study represents the first full mapping of E3 residues involved in dsRNA binding and tropism, forming a basis for future study.
author2 Cao, Jingxin (Medical Microbiology)
author_facet Cao, Jingxin (Medical Microbiology)
Dick, Kevin James
author Dick, Kevin James
author_sort Dick, Kevin James
title Mutational analysis of the dsRNA binding domain of Vaccinia Virus E3 protein
title_short Mutational analysis of the dsRNA binding domain of Vaccinia Virus E3 protein
title_full Mutational analysis of the dsRNA binding domain of Vaccinia Virus E3 protein
title_fullStr Mutational analysis of the dsRNA binding domain of Vaccinia Virus E3 protein
title_full_unstemmed Mutational analysis of the dsRNA binding domain of Vaccinia Virus E3 protein
title_sort mutational analysis of the dsrna binding domain of vaccinia virus e3 protein
publishDate 2011
url http://hdl.handle.net/1993/4852
work_keys_str_mv AT dickkevinjames mutationalanalysisofthedsrnabindingdomainofvacciniaviruse3protein
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