| Literature DB >> 22347477 |
Encheng Sun1, Jing Zhao, Nihong Liu, Tao Yang, Qingyuan Xu, Yongli Qin, Zhigao Bu, Yinhui Yang, Ross A Lunt, Linfa Wang, Donglai Wu.
Abstract
West Nile virus (WNV) is a mosquito-borne flavivirus that primarily infects birds but occasionally infects humans and horses. Certain species of birds, including crows, house sparrows, geese, blue jays and ravens, are considered highly susceptible hosts to WNV. The nonstructural protein 1 (NS1) of WNV can elicit protective immune responses, including NS1-reactive antibodies, during infection of animals. The antigenicity of NS1 suggests that NS1-reactive antibodies could provide a basis for serological diagnostic reagents. To further define serological reagents for diagnostic use, the antigenic sites in NS1 that are targeted by host immune responses need to be identified and the potential diagnostic value of individual antigenic sites also needs to be defined. The present study describes comprehensive mapping of common immunodominant linear B-cell epitopes in the WNV NS1 using avian WNV NS1 antisera. We screened antisera from chickens, ducks and geese immunized with purified NS1 for reactivity against 35 partially overlapping peptides covering the entire WNV NS1. This study identified twelve, nine and six peptide epitopes recognized by chicken, duck and goose antibody responses, respectively. Three epitopes (NS1-3, 14 and 24) were recognized by antibodies elicited by immunization in all three avian species tested. We also found that NS1-3 and 24 were WNV-specific epitopes, whereas the NS1-14 epitope was conserved among the Japanese encephalitis virus (JEV) serocomplex viruses based on the reactivity of avian WNV NS1 antisera against polypeptides derived from the NS1 sequences of viruses of the JEV serocomplex. Further analysis showed that the three common polypeptide epitopes were not recognized by antibodies in Avian Influenza Virus (AIV), Newcastle Disease Virus (NDV), Duck Plague Virus (DPV) and Goose Parvovirus (GPV) antisera. The knowledge and reagents generated in this study have potential applications in differential diagnostic approaches and subunit vaccines development for WNV and other viruses of the JEV serocomplex.Entities:
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Year: 2012 PMID: 22347477 PMCID: PMC3276514 DOI: 10.1371/journal.pone.0031434
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Determination of the titers of antisera by IFA.
| Titer of antisera | Time Points | ||||
| 0 week | 2nd week | 4th week | 5th week | 6th week | |
| Chicken antisera | <1∶2 | 1∶16 | 1∶64 | 1∶128 | 1∶128 |
| Chicken control | <1∶2 | <1∶2 | <1∶2 | <1∶2 | <1∶2 |
| Duck antisera | <1∶2 | 1∶8 | 1∶64 | 1∶256 | 1∶256 |
| Duck control | <1∶2 | <1∶2 | <1∶2 | <1∶2 | <1∶2 |
| Goose antisera | <1∶2 | 1∶32 | 1∶128 | 1∶256 | 1∶512 |
| Goose control | <1∶2 | <1∶2 | <1∶2 | <1∶2 | <1∶2 |
Identification of linear peptide epitopes in the WNV NS1 protein using antisera from different animals by WB.
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+ represents positive reaction with respectively expressed polypeptide using antisera by WB.
*represents the data cited from EC Sun et al. [57].
Figure 1Identification of NS1-derived linear peptide epitopes recognized by murine and avian antibodies generated following immunization with WNV NS1 protein.
Murine, chicken, duck and goose sera were collected following immunization with recombinant WNV NS1 protein and were evaluated for reactivity against a series of peptides derived from the WNV NS1 protein by ELISA. Each bar indicates antisera reactivity as determined by the mean absorbance at 492 nm and error bars indicate standard deviation.
Figure 2Assessment of the specificity of common avian immunodominant epitopes by ELISA using polypeptides derived from homologous regions of viruses from JEV serocomplex viruses.
Chicken, duck and goose antisera immunized with WNV NS1 protein were tested for reactivity against three corresponding polypeptides from other JEV serocomplex viruses by ELISA to identify serotype- and group-specific B cell epitopes. For each polypeptide, the left panel displays the results of ELISA evaluating antibody binding to the JEV serocomplex peptides. Each bar indicates antisera reactivity as determined by the mean absorbance. The right panel depicts the sequence alignments used to identify corresponding polypeptides from representative strains of associated flavivirus isolates. The sequences from DENV1-4 and YFV are shown for comparison.
Figure 3Reactivity of AIV, NDV, DPV and GPV antisera against the common peptide epitopes recognized by avian antisera raised against the WNV NS1 protein.
The presence of antibodies reactive against the three common WNV NS1 epitopes in the indicated sera were evaluated by ELISA. Each bar indicates antisera reactivity as determined by the mean absorbance at 492 nm and error bars indicate standard deviation.
Synthesized polypeptides used to identify linear peptide epitopes recognized by avian antisera.
| Peptide Designation | Peptide Sequence |
| Peptide-NS1-1 |
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| Peptide-NS1-3 |
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| Peptide-NS1-4 |
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| Peptide-NS1-6 |
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| Peptide-NS1-7 |
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| Peptide-NS1-8 |
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| Peptide-NS1-9 |
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| Peptide-NS1-11 |
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| Peptide-NS1-13 |
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| Peptide-NS1-14 |
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| Peptide-NS1-15 |
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| Peptide-NS1-18 |
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| Peptide-NS1-20 |
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| Peptide-NS1-23 |
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| Peptide-NS1-24 |
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| Peptide-NS1-26 |
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| Peptide-NS1-27 |
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| Peptide-NS1-31 |
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| V5-Tag |
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Synthesized polypeptides used to assess the cross-reactivity of antibodies that bind common avian immunodominant epitopes in the WNV NS1 protein with corresponding peptides derived from homologous regions of other JEV serocomplex viruses.
| Peptide Designation | Peptide Sequence |
| Peptide-3-Kunjin virus-NS1 |
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| Peptide-3-JEV-NS1 |
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| Peptide-3-MVEV-NS1 |
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| Peptide-3-SLEV-NS1 |
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| Peptide-14-Kunjin virus-NS1 |
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| Peptide-14-JEV-NS1 |
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| Peptide-14-MVEV-NS1 |
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| Peptide-14-SLEV-NS1 |
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| Peptide-24-Kunjin virus-NS1 |
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| Peptide-24-JEV-NS1 |
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| Peptide-24-MVEV-NS1 |
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| Peptide-24-SLEV-NS1 |
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