| Literature DB >> 28184219 |
Yun-Fei Hu1, Dun Zhao1, Xing-Long Yu1, Yu-Li Hu1, Run-Cheng Li1, Meng Ge1, Tian-Qi Xu1, Xiao-Bo Liu1, Hua-Yuan Liao1.
Abstract
Bacterial surface proteins can be good vaccine candidates. In the present study, we used polyclonal antibodies purified with intact Erysipelothrix rhusiopthiae to screen phage-displayed random dodecapeptide and loop-constrained heptapeptide libraries, which led to the identification of mimotopes. Homology search of the mimotope sequences against E. rhusiopthiae-encoded ORF sequences revealed 14 new antigens that may localize on the surface of E. rhusiopthiae. When these putative surface proteins were used to immunize mice, 9/11 antigens induced protective immunity. Thus, we have demonstrated that a combination of using the whole bacterial cells to purify antibodies and using the phage-displayed peptide libraries to determine the antigen specificities of the antibodies can lead to the discovery of novel bacterial surface antigens. This can be a general approach for identifying surface antigens for other bacterial species.Entities:
Keywords: Erysipelothrix rhusiopthiae; homology analysis; mimotope; phage display; subcellular localization; surface protein
Year: 2017 PMID: 28184219 PMCID: PMC5266700 DOI: 10.3389/fmicb.2017.00082
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Homologous protein alignment analysis of mimotopes with .
| 48
| 12 | Spa (Surface protective antigen, accession | |
| 446
| 5 | ||
| 14
| 3 | ||
| 395
| 2 | ||
| 865
| 10 | RspA (rhusiopathiae surface protein A, accession | |
| 1936
| 1 | ||
| 651
| 1 | ||
| 99
| 2 | ||
| 1152
| 2 | ||
| 1347
| 1 | RspC (rhusiopathiae surface protein C, accession | |
| 1032
| 1 | ||
| 1144
| 1 | ||
| 1027
| 1 | ||
| 786
| 1 | ||
| 458
| 1 | ||
| 258
| 5 | CwpA (LPXTG-motif cell wall anchor domain protein, accession | |
| 948
| 2 | ||
| 226
| 2 | ||
| 794
| 2 | ||
| 349
| 1 | Plp (Pectin lyase fold-containing protein, accession | |
| 1465
| 1 | ||
| 1465
| 6 | ||
| 421
| 1 | ||
| 399
| 1 | ||
| 1245
| 3 | CbpA (Collagen-binding protein, accession | |
| 78
| 2 | ||
| 1325
| 2 | ||
| 746
| 4 | Gh (Glycoside hydrolase, family 85, accession | |
| 237
| 1 | ||
| 965
| 1 | ||
| 363
| 2 | CbpB (Choline-binding protein, accession | |
| 113
| 2 | ||
| 511
| 2 | ||
| 128
| 1 | Bga (Beta-galactosidase, accession | |
| 1320
| 1 | ||
| 826
| 1 | ||
| 538
| 1 | ||
| 185
| 3 | Bml (Basic membrane lipoprotein, accession | |
| 188
| 2 | ||
| 433
| 1 | Neu (Neuraminidase, accession | |
| 698
| 1 | ||
| 712
| 1 | ||
| 579
| 1 | ||
| 191
| 1 | CwpB (LPXTG-motif cell wall anchor domain protein, accession | |
| 191
| 1 | ||
| 399
| 1 | ||
| 262
| 1 | Hp (alpha/beta hydrolase domain-containing protein, accession) | |
| 196
| 1 | ||
| 274
| 1 | CbpC (Collagen-binding protein, accession | |
| 950
| 1 | ||
| 556
| 2 | Da (Dipeptidyl aminopeptidase, accession | |
| 45
| 1 | Atsp (ABC transporter, substrate-binding protein, accession | |
| 45
| 1 | ||
| 1136
| 1 | Hya (Hyaluronidase, accession | |
| 1293
| 1 | ||
| 931
| 1 | Pca (peptidase M14, carboxypeptidase A, accession | |
| 1012
| 1 |
12-peptides screened from random library Ph.D.™-12.
7-peptides screened from random library Ph.D.-C7C; underlined sequences: may be the core residues and used for PHI-BLAST (performs the search but limits alignments to those core residues in the query); red font: may be the epitope region of the protein according to homologous protein alignment analysis of mimotope; red italic font: showing lower similarity to the mimotope but identified as a possible functional epitope by Protean software (surface probability analysis, DNAStar, Inc. Madison, WI).
PCR primers used for cloning of recombinant proteins.
| CwpA Fp | CGC | 692–941aa |
| CwpA Rp | CCG | |
| Plp Fp | CGC | 862–1500aa |
| Plp Rp | ACGC | |
| CbpA Fp | CGC | 26–350aa |
| CbpA Rp | CCG | |
| Bga Fp | CGC | 519–936aa |
| Bga Rp | CGC | |
| BML Fp | GGA | 20–362aa |
| BML Rp | T | |
| Neu Fp | CGC | 837–1156aa |
| Neu Rp | CGC | |
| CwpB Fp | CCC | 186–539aa |
| CwpB Rp | CCG | |
| Da Fp | CGC | 23–635aa |
| Da Rp | CGC | |
| Atsp Fp | CGC | 26–481aa |
| Atsp Rp | CCG | |
| Hya Fp | CGC | 818–1509aa |
| Hya Rp | ACGC | |
| Pca Fp | CGC | 602–1174aa |
| Pca Rp | CCG |
Underlined sequences: restriction enzyme cutting sites. Recombinant proteins, Gh, CbpC, and Hp, were not successfully expressed and the corresponding primers are not listed. The CwpA, Plp, CbpA, Bga, and Neu genes code for multi-fragment expression, but only the fragment of each with the highest antigenicity is shown.
Figure 1SDS-PAGE analysis of . M, protein marker; 1, negative control; 2, polyclonal antibodies against E. rhusiopthiae before purified by recombinant Staphylococcus Protein A affinity chromatography; 3, polyclonal antibodies against E. rhusiopthiae in reductive (β-mercaptoethanol) SDS-PAGE after complete purification; 4, BSA (250 μg/ml); 5, polyclonal antibodies against E. rhusiopthiae in non-reductive SDS-PAGE after complete purification.
Figure 2Protection of mice against . N, negative control (TBS); P, positive control (inactivated vaccine of E. rhusiopathiae). Recombinant proteins, adsorbed to an aluminum-containing adjuvant, were used to immunize 3-week old female Institute of Cancer Research (ICR) mice by subcutaneous injection (20 μg/mouse). After 2 weeks, the mice received a booster of the same recombinant proteins with adjuvant. TBS and inactivated vaccine of E. rhusiopathiae (5 × 107 CFU/mouse) were used as negative and positive controls, respectively. Two weeks after the last immunization, the mice were intraperitoneally challenged with 300 CFU of E. rhusiopathiae, and the mortalities were monitored for the following 14 days. Survival profiles were plotted for each infected group and analyzed with the log-rank/Mantel-Cox test using GraphPad Prism 5 software, p < 0.0001.
Figure 3Serum antibodies of recombinant proteins against . 1, Bga; 2, Hya; 3, Da; 4, Plp; 5, Bml; 6, Atsp; 7, Neu; 8, CbpA; 9, Pca; 10, CwpA; 11, CwpB; P, Positive control; N, Negative control. The error bars represent standard deviation of the mean from two independent experiments.
Figure 4Recombinant proteins of . Purified swine IgG against surface molecules of E. rhusiopathiae was used as the primary antibody. M, protein marker; three images are grouped together.