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1.
Chinese Journal of Virology ; (6): 213-218, 2012.
Article Dans Chinois | WPRIM | ID: wpr-354745

Résumé

PrME and NS1 gene were the two main immuneprotect proteins of Japanese encephalitis virus (JEV), and they were also N-linked glycosylation proteins. To clear the effect of N-glycosylation on JEV immunity, the N-glycosylation site of prME and NS1 gene were eliminated by site-directed mutant PCR, subtituting the N to Q. And the the mutant genes were subcloned into eukaryotic expression plasmid. Four-weeks female mice were immuned with the wildtype and mutant gene by twice. The antibodies against prME were detected by ELISA and the neutralization antibodies were tested by viral neutralizing assay. The immunoprotection were determined by attack with JEV virulent strain. Compare with the wild-type gene immuned-groups, one N-glycan eliminated prME gene could induce a little higher ELISA antibody, neutralization antibody and immunoprotection, but the immunity of gene with both N-glycan absence was decreased. The similar status were observed in the wildtype and mutant NS1 groups. Thus these results show that the N-linked glycosylation in the prME and NS1 gene were correlated with the immunity, one glycan absent would enhance the immunity but both two loss would impair it.


Sujets)
Animaux , Femelle , Humains , Souris , Anticorps antiviraux , Allergie et immunologie , Virus de l'encéphalite japonaise (espèce) , Génétique , Allergie et immunologie , Métabolisme , Encéphalite japonaise , Allergie et immunologie , Virologie , Glycosylation , Souris de lignée BALB C , Protéines virales non structurales , Génétique , Allergie et immunologie , Métabolisme
2.
Chinese Journal of Biotechnology ; (12): 725-730, 2005.
Article Dans Chinois | WPRIM | ID: wpr-237083

Résumé

To enhance the immuogenicity of DNA vaccines expressing the GP5 protein of Porcine Reproductive and Respiratory Syndrome Virus (PRRSV), the tegument protein VP22 (encoded by VP22 gene) of Bovine Herpesvirus 1 (BHV-1), which has been demonstrated to exhibit the unusual protein transduction property, was fused to N-terminus of GP5 of DNA vaccine construct pCI-ORF5M, resulting in pCI-VP22-ORF5M expressing VP22-GP5 fusion protein. The expression of VP22-GP5 fusion protein was confirmed by both indirect immunofluorescence assay (IFA) and Western blot. To investigate its immunogenicity, BALB/c mice were immunized with the fusion expression plasmid pCI-VP22-ORF5M and non-fusion expression plasmid pCI-ORF5M, respectively. The GP5-specific ELISA antibodies, neutralizing antibodies and lymphocyte proliferative responses were evaluated at various time points after primary immunization. The results showed that GP5-specific ELISA antibodies, neutralizing antibodies, and lymphocyte proliferative responses induced by DNA vaccine pCI-VP22-ORF5M were higher significantly than those of DNA vaccine pCI-ORF5M, indicating that fusion expression with BHV-1 VP22 significantly enhances the immuogenicity of DNA vaccine expressing the PRRSV GP5 protein, and that this strategy may also be useful to develop more efficient DNA vaccines against other pathogens.


Sujets)
Animaux , Femelle , Souris , Antigènes viraux , Génétique , Allergie et immunologie , Fusion artificielle de gènes , Souris de lignée BALB C , Syndrome dysgénésique et respiratoire porcin , Répartition aléatoire , Vaccins à ADN , Génétique , Allergie et immunologie , Protéines de l'enveloppe virale , Génétique , Allergie et immunologie , Protéines virales structurales , Génétique , Vaccins antiviraux , Génétique , Allergie et immunologie
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