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  3. Signal peptide and helical bundle domains of virulent canine distemper virus fusion protein restrict fusogenicity
 

Signal peptide and helical bundle domains of virulent canine distemper virus fusion protein restrict fusogenicity

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Publisher DOI
10.1128/JVI.01287-07
PubMed ID
17686846
Description
Persistence in canine distemper virus (CDV) infection is correlated with very limited cell-cell fusion and lack of cytolysis induced by the neurovirulent A75/17-CDV compared to that of the cytolytic Onderstepoort vaccine strain. We have previously shown that this difference was at least in part due to the amino acid sequence of the fusion (F) protein (P. Plattet, J. P. Rivals, B. Zuber, J. M. Brunner, A. Zurbriggen, and R. Wittek, Virology 337:312-326, 2005). Here, we investigated the molecular mechanisms of the neurovirulent CDV F protein underlying limited membrane fusion activity. By exchanging the signal peptide between both F CDV strains or replacing it with an exogenous signal peptide, we demonstrated that this domain controlled intracellular and consequently cell surface protein expression, thus indirectly modulating fusogenicity. In addition, by serially passaging a poorly fusogenic virus and selecting a syncytium-forming variant, we identified the mutation L372W as being responsible for this change of phenotype. Intriguingly, residue L372 potentially is located in the helical bundle domain of the F(1) subunit. We showed that this mutation drastically increased fusion activity of F proteins of both CDV strains in a signal peptide-independent manner. Due to its unique structure even among morbilliviruses, our findings with respect to the signal peptide are likely to be specifically relevant to CDV, whereas the results related to the helical bundle add new insights to our growing understanding of this class of F proteins. We conclude that different mechanisms involving multiple domains of the neurovirulent A75/17-CDV F protein act in concert to limit fusion activity, preventing lysis of infected cells, which ultimately may favor viral persistence.
Date of Publication
2007
Publication Type
Article
Contributor(s)
Plattet, Philippe
Department of Clinical Research and Veterinary Public Health, Experimentelle Klinische Forschung
Cherpillod, Pascal
Wiener, Dominique Judith
Departement klinische Veterinärmedizin, Klinische Forschung
Zipperle, Ljerka
Department of Clinical Research and Veterinary Public Health, Experimentelle Klinische Forschung
Vandevelde, Marc
Departement klinische Veterinärmedizin, Klinische Neurologie
Wittek, Riccardo
Zurbriggen, Andreas
Department of Clinical Research and Veterinary Public Health, Experimentelle Klinische Forschung
Additional Credits
Department of Clinical Research and Veterinary Public Health, Experimentelle Klinische Forschung
Departement klinische Veterinärmedizin, Klinische Forschung
Departement klinische Veterinärmedizin, Klinische Neurologie
Series
Journal of virology
Publisher
American Society for Microbiology
ISSN
0022-538X
Access(Rights)
metadata.only
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