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Salmonid viral haemorrhagic septicaemia virus: fusion-related enhancement of virus infectivity by peptides derived from viral glycoprotein G or a combinatorial library.
Mas, V; Pérez, L; Encinar, J A; Pastor, M T; Rocha, A; Perez-Paya, E; Ferrer-Montiel, A; Gonzalez Ros, J M; Estepa, A; Coll, J M.
Affiliation
  • Mas V; Ctr. Biología Molecular y Cellular, UMH, Elche, Spain1.
  • Pérez L; Ctr. Biología Molecular y Cellular, UMH, Elche, Spain1.
  • Encinar JA; Ctr. Biología Molecular y Cellular, UMH, Elche, Spain1.
  • Pastor MT; Dept Bioquimica i Biología Molecular, UV-46100, Burjasot, Valencia, Spain2.
  • Rocha A; INIA, Instituto Nacional de Investigaciones Agrarias, SGIT - Dept Biotecnología, Ctr. Coruña Km 7, Madrid, Spain3.
  • Perez-Paya E; Dept Bioquimica i Biología Molecular, UV-46100, Burjasot, Valencia, Spain2.
  • Ferrer-Montiel A; Ctr. Biología Molecular y Cellular, UMH, Elche, Spain1.
  • Gonzalez Ros JM; Ctr. Biología Molecular y Cellular, UMH, Elche, Spain1.
  • Estepa A; Ctr. Biología Molecular y Cellular, UMH, Elche, Spain1.
  • Coll JM; INIA, Instituto Nacional de Investigaciones Agrarias, SGIT - Dept Biotecnología, Ctr. Coruña Km 7, Madrid, Spain3.
J Gen Virol ; 83(Pt 11): 2671-2681, 2002 Nov.
Article in En | MEDLINE | ID: mdl-12388802
ABSTRACT
To search for enhancers and/or inhibitors of viral haemorrhagic septicaemia virus (VHSV, a salmonid rhabdovirus) infectivity, a total of 51 peptides from a pepscan of viral envelope protein G, a recombinant peptide from protein G (frg11) and 80 peptide mixtures from an alpha-helix-favoured combinatorial library were screened. However, contrary to what occurs in many other enveloped viruses, only peptides enhancing rather than inhibiting VHSV infectivity were found. Because some of the enhancer pepscan G peptides and frg11 were derived from phospholipid-binding or fusion-related regions identified previously, it was suggested that enhancement of virus infectivity might be related to virus-cell fusion. Furthermore, enhancement was significant only when the viral peptides were pre-incubated with VHSV at the optimal low pH of fusion, before being adjusted to physiological pH and assayed for infectivity. Enhancement of VHSV infectivity caused by the pre-incubation of VHSV with peptide p5 (SAAEASAKATAEATAKG), one of the individual enhancer peptides defined from the screening of the combinatorial library, was independent of the pre-incubation pH. However, it was also related to fusion because the binding of p5 to protein G induced VHSV to bypass the endosome pathway of infection and reduced the low-pH threshold of fusion, thus suggesting an alternative virus entry pathway for p5-VHSV complexes. Further investigations into VHSV enhancer peptides might shed some light on the mechanisms of VHSV fusion.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Glycoproteins / Viral Envelope Proteins / Novirhabdovirus / Antigens, Viral Limits: Animals Language: En Journal: J Gen Virol Year: 2002 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Glycoproteins / Viral Envelope Proteins / Novirhabdovirus / Antigens, Viral Limits: Animals Language: En Journal: J Gen Virol Year: 2002 Document type: Article