| Literature DB >> 28629383 |
Zhibang Zhang1, Xuexia Wen1, Jianguo Dong1, Xinna Ge1, Lei Zhou1, Hanchun Yang2, Xin Guo3.
Abstract
BACKGROUND: Porcine reproductive and respiratory syndrome virus (PRRSV), the causative agent of PRRS, has two distinct and highly diverse genotypes (genotype 1 and genotype 2) in the field. Accurate diagnosis and differentiation of the two genotypes of PRRSV are critical to the effective prevention and control of PRRS. The non-structural protein 10 (Nsp10) plays a vital role in viral replication and is one of the most conserved proteins of PRRSV, thus constituting a good candidate for PRRSV diagnosis.Entities:
Keywords: B-cell epitope; Differential diagnosis; Monoclonal antibody (mAb); Non-structural protein 10 (Nsp10); Porcine reproductive and respiratory syndrome virus (PRRSV)
Mesh:
Substances:
Year: 2017 PMID: 28629383 PMCID: PMC5477253 DOI: 10.1186/s12985-017-0782-9
Source DB: PubMed Journal: Virol J ISSN: 1743-422X Impact factor: 4.099
Fig. 1Analysis of expressed recombinant Nsp10 by SDS-PAGE (a) and Western blotting (b) with anti-His mAb. Lane M: protein molecular weight marker; Lane 1: lysates of pET-28a-Nsp10 transformed E. coli BL21 (DE3) before IPTG induction; Lane 2: lysates of pET-28a-Nsp10 transformed E. coli BL21 (DE3) after IPTG induction; Lane 3 and 4: purified recombinant Nsp10; Lane 5: lysates of pET-28a transformed E. coli BL21 (DE3) as negative control
Fig. 2Specific reactivity of Nsp10-specific mAb with the eukaryotic expressed Nsp10. a Western blotting of 293FT cells transfected with eukaryotic recombinant plasmids pCMV-HA-Nsp10 or the empty vector pCMV-HA. b Immunofluorescence staining of Vero cells transfected with eukaryotic plasmids pCMV-HA-Nsp10 (left) or pCMV-HA (right)
Fig. 3Schematic diagram showing the fragments of Nsp10 protein and their relative positions. Bars represent truncated Nsp10 peptides. The names of the peptides are shown in bold letters. Numbers represent amino acid positions of the peptides in Nsp10. Peptides that were negative in Western blotting against mAb 4D9 are shown by bars with dash lines, and peptides that were positive are shown by bars with solid lines
Fig. 4Primary scanning of the B-cell epitope of Nsp10-specific mAb. a The expression of the fragments of Nsp10 (A-1, A-2, A-3 and A-4) was visualized by fluorescent microscopy in recombinant plasmids transfected 293FT cells. b The reactivity of the four fragments with Nsp10-specific mAb and anti-GFP polyclonal antibodies were tested by Western blotting
Fig. 5Fine mapping of the mAb 4D9 epitope in Nsp10. Recombinant plasmids expressing a series of truncated Nsp10 were transfected into 293FT cells, and the expressed peptides were probed with anti-GFP polyclonal antibodies and the mAb 4D9 by Western blotting
Fig. 6Alignment of PRRSV Nsp10 protein of genotype 1 and genotype 2 isolates. The epitope-containing region is boxed. Dots represent residues that are identical to the majority
Fig. 7Reactivity of mAb 4D9 with the mutant of the epitope 286AIQPDYRDKL295. The plasmid pCMV-HA-E-1 expressing the epitope (E-1) and pCMV-HA-E-1-mutant expressing a mutant of E-1 with 2 mutations (290D/C290, 293D/E293) were constructed and transfected into Vero cells. The reaction of mAb 4D9 with the two epitopes was tested. a Western blotting of lysates of Vero cells transfected with pCMV-HA-E-1or pCMV-HA- E-1-mutant. b Confocal microscopy of Vero cells transfected with pCMV-HA-E-1 or pCMV-HA-E-1-mutant
Fig. 8Detection of Nsp10 with mAb 4D9 in genotype 1 or genotype 2 PRRSV-infected MARC-145 cells. a Western blotting of the lysates of PRRSV-infected MARC-145 cells using mAb 4D9 as primary antibodies. b Confocal microscopy of PRRSV-infected MARC-145 cells staining with mAb 4D9
Primers used for amplifying Nsp10 gene fragments and the corresponding amino acid sequence and size of each fragment
| Name | Primer sequence (5′-3′) | Amino acid (aa) sequence | Size (aa) | |
|---|---|---|---|---|
| A-1 | F |
| 1GKKSR……QTRRG100 | 100 |
| R |
| |||
| A-2 | F |
| 101LVSVR……TLQFP200 | 100 |
| R |
| |||
| A-3 | F |
| 201APSRT……MSMVN300 | 100 |
| R |
| |||
| A-4 | F |
| 301TTRVT……CADLE441 | 141 |
| R |
| |||
| B-1 | F |
| 201APSRT……LRLLS240 | 40 |
| R |
| |||
| B-2 | F |
| 231NHLDV……DIMPQ270 | 40 |
| R |
| |||
| B-3 | F |
| 261HCYVF……MSMVN300 | 40 |
| R |
| |||
| C-1 | F |
| 261HCYVF……IWRFG280 | 20 |
| R |
| |||
| C-2 | F |
| 271TQLKT……AIQPD290 | 20 |
| R |
| |||
| C-3 | F |
| 281QNICD……MSMVN300 | 20 |
| R |
| |||
| D-1 | F |
| 281QNICDAIQPDYRDKL295 | 15 |
| R |
| |||
| D-2 | F |
| 286AIQPDYRDKLMSMVN300 | 15 |
| R |
| |||
| E-1 | F |
| 286AIQPDYRDKL295 | 10 |
| R |
| |||
| E-1- | F |
| 286AIQPCYREKL295 | 10 |
| R |
| |||
| E-2 | F |
| 286AIQPDYRDK294 | 9 |
| R |
| |||
| E-3 | F |
| 287IQPDYRDKL295 | 9 |
| R |
| |||
The forward (F) and reverse (R) primers contain EcoRI and kpnI recognition sites, respectively (underlined). The superscript numbers indicate the relative location of the amino acids in Nsp10 protein