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Antigenic site changes in the rabies virus glycoprotein dictates functionality and neutralizing capability against divergent lyssaviruses.
Evans, J S; Selden, D; Wu, G; Wright, E; Horton, D L; Fooks, A R; Banyard, A C.
Afiliação
  • Evans JS; Wildlife Zoonoses and Vector Bourne Disease Research Group, Animal and Plant Health Agency, Woodham Lane, Weybridge, Surrey, KT15 3NB, UK.
  • Selden D; University of Warwick, Gibbet Hill Road, Coventry, West Midlands, CV4 7AL, UK.
  • Wu G; Wildlife Zoonoses and Vector Bourne Disease Research Group, Animal and Plant Health Agency, Woodham Lane, Weybridge, Surrey, KT15 3NB, UK.
  • Wright E; Wildlife Zoonoses and Vector Bourne Disease Research Group, Animal and Plant Health Agency, Woodham Lane, Weybridge, Surrey, KT15 3NB, UK.
  • Horton DL; Viral Pseudotype Unit, Faculty of Science and Technology, University of Westminster, London, W1W 6UW, UK.
  • Fooks AR; School of Veterinary Medicine, University of Surrey, GU2 7AX, UK.
  • Banyard AC; Wildlife Zoonoses and Vector Bourne Disease Research Group, Animal and Plant Health Agency, Woodham Lane, Weybridge, Surrey, KT15 3NB, UK.
J Gen Virol ; 99(2): 169-180, 2018 02.
Article em En | MEDLINE | ID: mdl-29300155
ABSTRACT
Lyssavirus infection has a near 100 % case fatality rate following the onset of clinical disease, and current rabies vaccines confer protection against all reported phylogroup I lyssaviruses. However, there is little or no protection against more divergent lyssaviruses and so investigation into epitopes within the glycoprotein (G) that dictate a neutralizing response against divergent lyssaviruses is warranted. Importantly, the facilities required to work with these pathogens, including wild-type and mutated forms of different lyssaviruses, are scarcely available and, as such, this type of study is inherently difficult to perform. The relevance of proposed immunogenic antigenic sites within the lyssavirus glycoprotein was assessed by swapping sites between phylogroup-I and -II glycoproteins. Demonstrable intra- but limited inter-phylogroup cross-neutralization was observed. Pseudotype viruses (PTVs) presenting a phylogroup-I glycoprotein containing phylogroup-II antigenic sites (I, II III or IV) were neutralized by antibodies raised against phylogroup-II PTV with the site II (IIb, aa 34-42 and IIa, aa 198-200)-swapped PTVs being efficiently neutralized, whilst site IV-swapped PTV was poorly neutralized. Specific antibodies raised against PTV-containing antigenic site swaps between phylogroup-I and -II glycoproteins neutralized phylogroup-I PTVs efficiently, indicating an immunodominance of antigenic site II. Live lyssaviruses containing antigenic site-swapped glycoproteins were generated and indicated that specific residues within the lyssavirus glycoprotein dictate functionality and enable differential neutralizing antibody responses to lyssaviruses.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Vacina Antirrábica / Glicoproteínas / Infecções por Rhabdoviridae / Lyssavirus / Anticorpos Antivirais / Antígenos Virais Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Vacina Antirrábica / Glicoproteínas / Infecções por Rhabdoviridae / Lyssavirus / Anticorpos Antivirais / Antígenos Virais Idioma: En Ano de publicação: 2018 Tipo de documento: Article