| Literature DB >> 25547933 |
Juan Bai1, Xinhui Chen2, Kangfu Jiang3, Basit Zeshan4, Ping Jiang5,6.
Abstract
BACKGROUND: Encephalomyocarditis virus (EMCV) can cause myocarditis, respiratory failure, reproductive failure, and sudden death in pre-weaned piglets, which has been isolated in China. EMCV VP1 protein was one of the most important structural proteins and played an important role in the protective immunity. In this study, 10 monoclonal antibodies (McAbs) against EMCV VP1 were screened and identified.Entities:
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Year: 2014 PMID: 25547933 PMCID: PMC4297377 DOI: 10.1186/s12985-014-0226-8
Source DB: PubMed Journal: Virol J ISSN: 1743-422X Impact factor: 4.099
Figure 1Identification of McAbs with Western blot (up) and IFA (down). A. 1D1; B. 2A2; C. 6B11; D. 1G8. Western blot: Lane1. purified EMCV; Lane2. BHK21 cells lyses; Lane3. recombinant VP1 expressed in E. coli BL21 containing pET-28a-VP1 plasmid.
Figure 2The truncated fragments F1 ~ F26 were identified by Western blot with GST-tagged monoclonal antibody.
Figure 3Epitope mapping of McAbs by Western blot. The truncated fragments were detected with McAbs. (A) McAb 6B11 specifically reacted with proteins which containing V(2)ENAEK(7) sequence; McAbs 7A7 and 7C9 have the same characteristic as 6E11(data not shown); (B) McAb 1D1 specifically reacted with proteins which containing F(19)VAQPVY(25) sequence; McAbs 2A2, 4B9, 4 F1, 5A1, 5A11 and 5G1 have the same characteristic as 1D1(data not shown); (C) McAb 3A9 specifically reacted with proteins which containing P(42)IGAFTVK(49) sequence; McAb 1G8 has the same characteristic as 3A9(data not shown).
Figure 4Reactivity of McAbs with the different fragments of VP1 expressed in by ELISA. (A) Reactivity of McAbs, 6E11, 7A7 and 7C9 with the fragments for identifying the epitope 2-7aa. (B) Reactivity of McAbs, 1D1, 2A2, 5A1, 5A11 and 5G1 with the fragments for identifying the epitope 19-25aa. (C) Reactivity of McAbs, 1G8 and 3A9 with the fragments for identifying the epitope 42-49aa.
Figure 5Reactivity of the peptides with each McAbs and EMCV-specific serum. The synthetic peptides, P2-7aa, P19-25aa and P42-49aa, were used as ELISA antigens. The recombinant VP1 and F3 fragment of VP1 expressed in E.coli was used as positive control. P: EMCV-specific serum; N: EMCV negative serum.
Figure 6Multiple alignments of the epitopes of VP1 among 16 EMCV isolates. The amino acid sequences of the immunodominant epitopes identified were the gray area. Alignments of the amino acid sequences were made using DNAstar MegAlign software.
Figure 7Alignment of whole VP1 amino acid sequence of NJ08 with the selected strain mengo virus. The black points represented different amino acids.
Figure 8The locations of the three epitopes. The picture was about the complete particle of mengo virus. VP1 is shown in red ribbon, VP3 is shown in green ribbon, VP2 is shown in yellow ribbon, and VP4 is shown in blue ribbon. The 3 epitopes presented as spheres, V(2)ENAEK(7) is colored cyan, F(19)VAQPVY(25) is colored magenta, and P(42)IGAFTVK(49) is orange. The figure was generated using UCSF chimera [22]. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article).
Figure 9Schematic diagram of the VP1 protein, showing the expression constructs of the VP1 fragments F1 to F26 and their interaction with McAbs in indirect ELISA analysis. “+”: Positive. “-”: Negative.
Primers set for amplification of the overlapping and truncated segments of VP1 gene
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| F1:1 ~ 168aa | 5′-GATGGATCCGGAGTAGAAAACGC-3′ | F14:18 ~ 168aa | 5′-AATGGATCCGACTTTGTGGCTCAACC-3′ |
| 5′-TAACTCGAGCTAGCCTTCTGAGAG-3′ | 5′-ATTCTCGAGCTAGCCTTCTGAGAGGG-3′ | ||
| F2:106 ~ 277aa | 5′-CGCGGATCCCTTAAATCCAAACAG-3′ | F15:17 ~ 168aa | 5′-TAAGGATCCGCTGACTTTGTGGC-3′ |
| 5′-GACCTCGAGTACTCTAGCATCAAG-3′ | 5′-ATTCTCGAGCTAGCCTTCTGAGAGGG-3′ | ||
| F3:1 ~ 72aa | 5′-GATGGATCCGGAGTAGAAAACGC-3′ | F16:-100 ~ 23aa | 5′-TTAGGATCCGGAGCGGGCAAG-3′ |
| 5′-CACCTCGAGCTAGTCAGTATCACTG-3′ | 5′-ATCCTCGAGCTATGGTTGAGCCACAAA-3′ | ||
| F4:38 ~ 105aa | 5′-TAAGGATCCGATAGGTCCAGTC-3′ | F17:-100 ~ 24aa | 5′-TTAGGATCCGGAGCGGGCAAG-3′ |
| 5′-GACCTCGAGCTACGGAAAGACTTTTG-3′ | 5′-CATCTCGAGCTAAACTGGTTGAGCCA-3′ | ||
| F5:14 ~ 105aa | 5′-ATTGGATCCGACGCAACTGCTGA-3′ | F18:-100 ~ 25aa | 5′-TTAGGATCCGGAGCGGGCAAG-3′ |
| 5′-GACCTCGAGCTACGGAAAGACTTTTG-3′ | 5′-CATCTCGAGCTAGTAAACTGGTTGAGCC-3′ | ||
| F6:7 ~ 105aa | 5′-CAGGGATCCAAAGGGGTCACTGAAAAC-3′ | F19:-100 ~ 26aa | 5′-TTAGGATCCGGAGCGGGCAAG-3′ |
| 5′-GACCTCGAGCTACGGAAAGACTTTTG-3′ | 5′-AGCCTCGAGCTACAAGTAAACTGGTTGA-3′ | ||
| F7:4 ~ 168aa | 5′-GCAGGATCCAACGCTGAAAAAG-3′ | F20:43 ~ 168aa | 5′-TAAGGATCCATTGGTGCCTTCACCG-3′ |
| 5′-ATTCTCGAGCTAGCCTTCTGAGAGGG-3′ | 5′-ATTCTCGAGCTAGCCTTCTGAGAGGG-3′ | ||
| F8:3 ~ 168aa | 5′-CCGGGATCCGAAAACGCTGAAAAA-3′ | F21:42 ~ 168aa | 5′-ATTGGATCCCCCATTGGTGCCTTC-3′ |
| 5′-ATTCTCGAGCTAGCCTTCTGAGAGGG-3′ | 5′-ATTCTCGAGCTAGCCTTCTGAGAGGG-3′ | ||
| F9:2 ~ 168aa | 5′-CGAGGATCCGTAGAAAACGCTGAA-3′ | F22:41 ~ 168aa | 5′-ATAGGATCCAGTCCCATTGGTGCC-3′ |
| 5′-ATTCTCGAGCTAGCCTTCTGAGAGGG-3′ | 5′-ATTCTCGAGCTAGCCTTCTGAGAGGG-3′ | ||
| F10:-100 ~ 6aa | 5′-TTAGGATCCGGAGCGGGCAAG-3′ | F23:-100 ~ 47aa | 5′-TTAGGATCCGGAGCGGGCAAG-3′ |
| 5′-GCACTCGAGCTATTCAGCGTTTTCTACT-3′ | 5′-TTCCTCGAGCTAGGTGAAGGCACCAAT-3′ | ||
| F11:-100 ~ 7aa | 5′-TTAGGATCCGGAGCGGGCAAG-3′ | F24:-100 ~ 48aa | 5′-TTAGGATCCGGAGCGGGCAAG-3′ |
| 5′-GGCCTCGAGCTATTTTTCAGCGTTTTCTAC-3′ | 5′-ATACTCGAGCTACACGGTGAAGGCACC-3′ | ||
| F12:20 ~ 168aa | 5′-TCAGGATCCGTGGCTCAACCAGTTTAC-3′ | F25:-100 ~ 49aa | 5′-TTAGGATCCGGAGCGGGCAAG-3′ |
| 5′-ATTCTCGAGCTAGCCTTCTGAGAGGG-3′ | 5′-ATACTCGAGCTACTTCACGGTGAAGGC-3′ | ||
| F13:19 ~ 168aa | 5′-ACTGGATCCTTTGTGGCTCAACCAG-3′ | F26:-100 ~ 50aa | 5′-TTAGGATCCGGAGCGGGCAAG-3′ |
| 5′-ATTCTCGAGCTAGCCTTCTGAGAGGG-3′ | 5′-AACCTCGAGCTAGGACTTCACGGTGAA-3′ |
The EMCV reference strains cited in this study
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| GXLC | FJ897755 | China | Swine | Myocarditis |
| BJC3 | DQ464062 | China | Swine | Reproductive failure |
| HB1 | DQ464063 | China | Swine | Myocarditis |
| K3 | EU780148 | Korea | Swine | Reproductive failure |
| K11 | EU780149 | Korea | Swine | Reproductive failure |
| CBNU | DQ517424 | Korea | Swine | Reproductive failure |
| BEL-2887A | AF356822 | Belgium | Swine | Reproductive failure |
| PV21 | X74312 | Germany | Swine | Myocarditis |
| D variant | M37588 | USA | Swine | Myocarditis |
| EMC-B | M22457 | USA | Swine | Myocarditis |
| EMC-D | M22458 | USA | Swine | Myocarditis |
| GX0602 | FJ604853 | China | Mice | Myocarditis |
| Mengo-M | L22089 | Uganda | Monkey | Myocarditis |
| Mengo Rz-pMwt | DQ294633 | USA | Myocarditis | |
| EMCV-R | M81861 | USA | Chimpanzee | Myocarditis |
| PEC9 | DQ288856 | USA | Mice | Myocarditis |