Construction and characterization of a bovine herpesvirus 5 mutant with a deletion of the gI, gE and US9 genes

Bovine herpesvirus 5 (BoHV-5) is a important cause of viral encephalitis in cattle in South America. Within the framework of developing a differential vaccine against BoHV-5, a deletion mutant was constructed based on a Brazilian BoHV-5 isolate. The target of the deletions were genes that code prote...

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Veröffentlicht in:Brazilian journal of microbiology 2007-12, Vol.38 (4), p.667-673
Hauptverfasser: Franco, Ana Cláudia(Universidade Federal do Rio Grande do Sul Instituto de Ciências Básicas da Saúde Departamento de Microbiologia), Hübner, Sílvia de Oliveira(Universidade Federal de Pelotas Faculdade de Veterinária), Oliveira, Anna Paula de(Centro de Pesquisas Veterinárias Desidério Finamor), Batista, Helena B. de C. Ruthner(Universidade Federal do Rio Grande do Sul Instituto de Ciências Básicas da Saúde Departamento de Microbiologia), Roehe, Paulo Michel(Universidade Federal do Rio Grande do Sul Instituto de Ciências Básicas da Saúde Departamento de Microbiologia,Centro de Pesquisas Veterinárias Desidério Finamor), Rijsewijk, Franciscus A.M.(Universidade Federal do Rio Grande do Sul Instituto de Ciências Básicas da Saúde Departamento de Microbiologia)
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Sprache:eng
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Zusammenfassung:Bovine herpesvirus 5 (BoHV-5) is a important cause of viral encephalitis in cattle in South America. Within the framework of developing a differential vaccine against BoHV-5, a deletion mutant was constructed based on a Brazilian BoHV-5 isolate. The target of the deletions were genes that code proteins implicated in the neurovirulence of BoHV-5, the glycoprotein I (gI), glycoprotein E (gE) and membrane protein US9. To construct the deletion mutant of BoHV-5, the flanking regions of all three genes were cloned in a prokaryotic plasmid. This deletion fragment was co-transfected with the viral DNA into bovine cells. Identification of deletion mutants was performed by immunostaining with an anti-gE monoclonal antibody. One of the gE negative viral populations found was purified, amplified and further examined by restriction endonuclesase analysis of its genomic DNA. The plaque sizes and penetration kinetics of the deletion mutant and wild type viruses were compared. The plaque sizes of the deletion mutant were significantly smaller than those of the parental strain (p
ISSN:1517-8382
1678-4405
1678-4405
DOI:10.1590/S1517-83822007000400016