| Literature DB >> 26878800 |
Desheng Kong1, Jiasen Liu1, Qian Jiang1, Zuo Yu1, Xiaoliang Hu1, Dongchun Guo1, Qianqian Huang1, Meihui Jiao1, Liandong Qu1.
Abstract
In 2010, a new rabbit hemorrhagic disease virus (RHDV) variant, designated RHDV2, was identified for the first time in Italy. Studies have shown that RHDV2 differs from RHDV1 (traditional RHDV) in terms of its antigenic profile and genetic characteristics. The VP60 protein of RHDV is a structural protein that plays important roles in viral replication, assembly, and immunogenicity. In this study, we immunized BALB/c mice with recombinant VP60 proteins from different RHDV subtypes. After three rounds of subcloning, type-specific positive hybridoma clones of RHDV1 and RHDV2 were further identified by an enzyme-linked immunosorbent assay, Western blotting, and an indirect immunofluorescence assay. Finally, three monoclonal antibodies (MAbs) (1D6, 1H2, and 3F2) that only recognize RHDV1, and four MAbs (1G2, 2C1, 3B7, and 5D6) that only recognize RHDV2 were identified. The epitopes recognized by these MAbs were mapped by Western blotting. Sequence analysis showed that the epitope sequences recognized by 1D6, 1H2, and 3F2 are highly conserved (98%) among RHDV1 strains, whereas the epitope sequences recognized by 1G2, 2C1, 3B7, and 5D6 are 100% conserved among RHDV2 strains. The high conservation of the epitope sequence showed that the screened MAbs were type-specific, and that they could distinguish different RHDV subtypes.Entities:
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Year: 2016 PMID: 26878800 PMCID: PMC4754648 DOI: 10.1038/srep20857
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Identification of RHDV type-specific MAbs by indirect ELISA.
The RHDV TP strain, pVP60-1, pVP60-2, and six short peptides were used as the detection antigens with positive hybridomas. Among the 20 MAbs against RHDV1, three MAbs, 1D6, 1H2, and 3F2 (a), which only recognized RHDV1, were detected. Among the 15 MAbs against RHDV2, four MAbs, 1G2, 2C1, 3B7, and 5D6 (b), which only recognized RHDV2, were detected. MAbs 1H2 and 3F2 could also react with R-A1 (amino acids 298–319).
Figure 2Identification of RHDV type-specific MAbs by Western blotting.
After SDS-PAGE, eVP60-1 and eVP60-2, which were expressed in HeLa cells, were transferred to nitrocellulose membranes. MAbs 1D6, 1H2, and 3F2 against RHDV1 (a) could only recognize eVP60-1, whereas MAbs 1G2, 2C1, 3B7, and 5D6 against RHDV2 (b) could only recognize eVP60-2. M, PageRuler Prestained Protein Ladder; 1, eVP60-1 protein; 2, eVP60-1 protein; P, rabbit hyperimmune serum against RHDV1 was used as a positive control.
Figure 3Identification of RHDV type-specific MAbs by IFA.
MAbs 1D6, 1H2, and 3F2 against RHDV1 (a) only reacted positively with eVP60-1 expressed in HeLa cells and sVP60-1 expressed in Sf9 cells, whereas MAbs 1G2, 2C1, 3B7, and 5D6 against RHDV2 (b) only reacted positively with eVP60-2 expressed in HeLa cells and sVP60-2 expressed in Sf9 cells. 1, eVP60-1 expressed in HeLa cells; 2, eVP60-2 expressed in HeLa cells; 3, sVP60-1 expressed in Sf9 cells; 4, sVP60-2 expressed in Sf9 cells.
Isotypes and hydroperitoneum antibody titers of representative type-specific clones.
| MAb | MAbs strain | Isotype | ELISA titers | MAb | MAbs strain | Isotype | ELISA titers |
|---|---|---|---|---|---|---|---|
| 1D6 | RHDV1 | IgG2b, | 218 | 1G2 | RHDV2 | IgG2a, | 218 |
| 1H2 | RHDV1 | IgG1, | 220 | 2C1 | RHDV2 | IgG1, | 218 |
| 3F2 | RHDV1 | IgG1, | 220 | 3B7 | RHDV2 | IgG2a, | 218 |
| 5D6 | RHDV2 | IgG2a, | 218 |
Figure 4Fine locations of type-specific MAb epitopes.
Reactivities of RHDV1 type-specific MAbs (a) and RHDV2 type-specific MAbs (b) with truncated recombinant VP60 proteins by Western blotting. The names of the truncated proteins are shown in Table 3 and Table 4. A hexahistidine peptide and GST were used as negative controls; the shortest recombinant VP60 protein was used as a positive control. M: PageRuler Prestained Protein Ladder.
Sequences analysis of the MAb antigenic epitopes of different RHDV subtypes.
| Virus strain | Accession number | MAb 1D6 | MAb 1H2/3F2 | MAb 2C1 | MAb 1G2/3B7/5D6 |
|---|---|---|---|---|---|
| RHDV1 | AAM21587.1 | 256RWNGQ260 | 312VLQFW316 | ||
| RHDV1 | AAK85434.1 | RWNGQ | VLQFW | ||
| RHDV1 | AAP15339.1 | RWNGQ | VLQFW | ||
| RHDV1 | ABA46867.1 | RWNGQ | VLQFW | ||
| RHDV1 | ABH10017.1 | RWNGQ | VLQFW | ||
| RHDV1 | ACB28856.1 | RWNGQ | VLQFW | ||
| RHDV1 | AEB26305.1 | RW | |||
| RHDV1 | AEU09705.1 | RWNGQ | VLQFW | ||
| RHDV1 | AEU09706.1 | RWNGQ | VLQFW | ||
| RHDV1 | AEU09707.1 | RWNGQ | VLQFW | ||
| RHDV1 | AEU09708.1 | RWNGQ | VLQFW | ||
| RHDV1 | AFN69440.1 | RWNGQ | VLQFW | ||
| RHDV1 | CAA75624.1 | RWN | VLQFW | ||
| RHDV1 | CAA80883.1 | RWNGQ | VLQFW | ||
| RHDV1 | CAA75625.1 | RWNGQ | VLQFW | ||
| RHDV1 | CAA75631.1 | RWNGQ | VLQFW | ||
| RHDV1 | CAA75632.1 | RWNGQ | VLQFW | ||
| RHDV1 | CAA75633.1 | RWNGQ | VLQFW | ||
| RHDV1 | CAD91718.1 | RWNGQ | VLQFW | ||
| RHDV1 | NP_740333.1 | RWNGQ | VLQFW | ||
| RHDV1 | CAA60910.1 | RWNGQ | VLQFW | ||
| RHDVa | ABX38989.2 | RWNGQ | VLQFW | ||
| RCV | CAA65611.1 | RWN | VLQFW | ||
| EBHSV | CAA66639.1 | RW | |||
| RHDV2 | CCH15347.1 | RWNG | VL | 324ADNPIS329 | 294AIDHD298 |
| RHDV2 | CCH15344.1 | RWNG | VL | ADNPIS | AIDHD |
| RHDV2 | CCH15345.1 | RWNG | VL | ADNPIS | AIDHD |
| RHDV2 | CCH15346.1 | RWNG | VL | ADNPIS | AIDHD |
| RHDV2 | CCH80663.1 | RWNG | VL | ADNPIS | AIDHD |
| RHDV2 | CBZ39415.3 | RWNG | VL | ADNPIS | AIDHD |
| RHDV2 | AGC11803.1 | RWNG | VL | ADNPIS | AIDHD |
| RHDV2 | AGC11805.1 | RWNG | VL | ADNPIS | AIDHD |
| RHDV2 | AGW27412.1 | RWNG | VL | ADNPIS | AIDHD |
| RHDV2 | AGW27413.1 | RWNG | VL | ADNPIS | AIDHD |
| RHDV2 | AGW27414.1 | RWNG | VL | ADNPIS | AIDHD |
| RHDV2 | AHL89009.1 | RWNG | VL | ADNPIS | AIDHD |
Sequences of the primers and vectors used for RHDV1 type-specific MAb epitope identification.
| Fragment | Primer sequences (5′–3′)A | Position In VP60 geneB | Vector | |
|---|---|---|---|---|
| Sense | Negative –sense | |||
| pR1-VP60 | G | CCC | 1–1740 | pET-32a |
| eR1-VP60 | CCC | G | 1–1740 | pcDNA3.1(+) |
| R1-VP60-1 | G | 1–342 | pGEX-6p-1 | |
| R1-VP60-2 | G | CCC | 301–570 | pET-32a |
| R1-VP60-3 | G | CCC | 514–720 | pET-32a |
| R1-VP60-4 | G | CCC | 679–900 | pET-32a |
| R1-VP60-5 | G | CCC | 859–1353 | pET-32a |
| R1-VP60-6 | G | CCC | 1300–1740 | pET-32a |
| R1-VP60-4.1 | G | CCC | 715–795 | pET-32a |
| R1-VP60-4.2 | G | CCC | 781–873 | pET-32a |
| R1-VP60-4.3 | G | CCC | 715–816 | pET-32a |
| R1-VP60-4.4 | G | CCC | 766–873 | pET-32a |
| 1D6-1 | G | CCC | 769–795 | pET-32a |
| 1D6-2 | G | CCC | 771–795 | pET-32a |
| 1D6-3 | G | CCC | 766–792 | pET-32a |
| 1D6-4 | G | CCC | 766–789 | pET-32a |
| 1D6-5 | G | CCC | 766–786 | pET-32a |
| 1D6-6 | G | CCC | 766–783 | pET-32a |
| 1D6-7 | G | CCC | 766–780 | pET-32a |
| 1D6-8 | G | CCC | 766–777 | pET-32a |
| R1-A1-1 | G | CCC | 892–927 | pET-32a |
| R1-A1-2 | G | CCC | 913–942 | pET-32a |
| R1-A1-3 | G | CCC | 928–957 | pET-32a |
| 1H2-1 | G | CCC | 931–957 | pET-32a |
| 1H2-2 | G | CCC | 934–957 | pET-32a |
| 1H2-3 | G | CCC | 937–957 | pET-32a |
| 1H2-4 | G | CCC | 940–957 | pET-32a |
| 1H2-5 | G | CCC | 928–954 | pET-32a |
| 1H2-6 | G | CCC | 928–951 | pET-32a |
| 1H2-7 | G | CCC | 928–948 | pET-32a |
| 1H2-8 | G | CCC | 928–945 | pET-32a |
| 1H2-9 | G | CCC | 928–942 | pET-32a |
AUnderlined letters indicate additional restriction enzyme sites: EcoRI and Hind III for the vector pET-32a, EcoRI and SalI for the vector pGEX-6P-1, and HindIII and EcoRI for the vector pcDNA3.1(+) were introduced into each primer. The boxed TTAs are the stop codon additions introduced into the antisense primers of the VP60 fragments for use with pGEX-6P-1. BNucleotide positions correspond to those in the sequence of the RHDV1 VP60 gene (GenBank accession no.: AF453761.1).
Sequences of the primers and vectors used for RHDV2 type-specific MAbs epitope identification.
| Fragment | Primer sequences (5′-3′)A | Position In VP60 geneB | Vector | |
|---|---|---|---|---|
| Sense | Negative –sense | |||
| pR2-VP60 | G | CCC | 1–1740 | pET-32a |
| eR2-VP60 | CCC | G | 1–1740 | pcDNA3.1(+) |
| R2-VP60-1 | G | 1–339 | pGEX-6p-1 | |
| R2-VP60-2 | G | CCC | 283–570 | pET-32a |
| R2-VP60-3 | G | CCC | 511–720 | pET-32a |
| R2-VP60-4 | G | CCC | 670–900 | pET-32a |
| R2-VP60-5 | G | CCC | 859–1353 | pET-32a |
| R2-VP60-6 | G | CCC | 1300–1740 | pET-32a |
| R2-VP60-5.1 | G | CCC | 898–1029 | pET-32a |
| R2-VP60-5.2 | G | CCC | 985–1134 | pET-32a |
| R2-VP60-5.3 | G | CCC | 1087–1254 | pET-32a |
| R2-VP60-5.4 | G | CCC | 1210–1305 | pET-32a |
| R2-VP60-5.1-1 | G | CCC | 898–996 | pET-32a |
| R2-VP60-5.1-2 | G | CCC | 964–1029 | pET-32a |
| 2C1-1 | G | CCC | 967–996 | pET-32a |
| 2C1-2 | G | CCC | 970–996 | pET-32a |
| 2C1-3 | G | CCC | 973–996 | pET-32a |
| 2C1-4 | G | CCC | 976–996 | pET-32a |
| 2C1-5 | G | CCC | 964–993 | pET-32a |
| 2C1-6 | G | CCC | 964–990 | pET-32a |
| 2C1-7 | G | CCC | 964–987 | pET-32a |
| 2C1-8 | G | CCC | 964–984 | pET-32a |
| R2-VP60-4.1 | G | CCC | 898–987 | pET-32a |
| R2-VP60-4.2 | G | CCC | 946–1029 | pET-32a |
| 1G2-1 | G | CCC | 877–900 | pET-32a |
| 1G2-2 | G | CCC | 880–900 | pET-32a |
| 1G2-3 | G | CCC | 883–900 | pET-32a |
| 1G2-4 | G | CCC | 886–900 | pET-32a |
| 1G2-5 | G | CCC | 874–897 | pET-32a |
| 1G2-6 | G | CCC | 874–894 | pET-32a |
| 1G2-7 | G | CCC | 874–891 | pET-32a |
AUnderlined letters indicate additional restriction enzyme sites: EcoRI and Hind III for the vector pET-32a, EcoRI and SalI for the vector pGEX-6P-1, and HindIII and EcoRI for the vector pcDNA3.1(+) were introduced into each primer. The boxed TTAs are the stop codon additions introduced into the antisense primers of the VP60 fragments for use with pGEX-6P-1. BNucleotide positions correspond to those in the sequence of the RHDV2 VP60 gene (GenBank accession no.: HE800532.1).
Sequences of the synthesized polypeptides.
| Name | Virus strain | Sequence | Length |
|---|---|---|---|
| R-A1 | RHDV1 | 298RRGSASYSGNNSTNVLQFWYAN319 | 22 aa |
| R2-B1 | RHDV2 | 298DKGKASYPGSSSSNVLELWYAS319 | 22 aa |
| R-A2 | RHDV1 | 429PNASAVTYTPQPDRIVTT446 | 18 aa |
| R2-B2 | RHDV2 | 429PNSSAITYTPQPNRIVNA446 | 18 aa |
| R-A3 | RHDV1 | 405YAVVTGTNQNPTG417 | 13 aa |
| R2-B3 | RHDV2 | 405YGVATGINQATAG417 | 13 aa |