| Literature DB >> 31666115 |
Li Ma1, Wenrong Zhao1, Xunya Hou2, Mengmeng Liu1, Yanna Li1, Li Shen1, Xindong Xu3.
Abstract
BACKGROUND: The identification and characterization of epitopes facilitate the discovery and developEntities:
Keywords: Diagnosis; Epitope; Fusion protein; Schisitosoma japonicum; SjSP-13
Mesh:
Substances:
Year: 2019 PMID: 31666115 PMCID: PMC6822365 DOI: 10.1186/s13071-019-3767-2
Source DB: PubMed Journal: Parasit Vectors ISSN: 1756-3305 Impact factor: 3.876
Fig. 1Peptide mapping of SjSP-13. 156-aa length SjSP-13 fragment without the signal peptide was divided into 17 peptides with the length of 18 aa per peptide, except for the last 12-aa length peptide. There are 9 overlapped amino acids between the two adjacent peptides
Fig. 2Schematic diagram of the GST-peptide-His fusion protein microplate array. a GST-peptide-His fusion protein was bound to the GSH-immobilized microplates via the interaction of GST and GSH. The integrity of the bound GST-peptide-His fusion protein could be detected by anti-GST and anti-6xHis antibodies. b High RLUs were detected by chemiluminescent ELISA when using both anti-GST and anti-6xHis antibodies, validating the reliability of the epitope screening platform. Abbreviation: RLUs, relative light units. Key: red dot, the positive recombinant GST protein with an N-terminal 6 x His tag (GST-His); blue dot, negative E. coli lysis; black dots, GST-peptide-His fusion proteins
Fig. 3Identification of SjSP-13 peptides recognized in sera from schistosomiasis patients. a Reaction of 10 human serum samples (seven infected samples and three uninfected samples from healthy individuals) to the 17 GST-peptide-His fusion proteins determined by chemiluminescent ELISA. R = (RLUs of GST-peptide-His – RLUs of PBS)/ (RLUs of GST-His – RLUs of PBS). GST-peptide-His with R ≥ 2 were considered as seropositive reaction. Abbreviations: RLUs, relative light units; HA, hemagglutinin tag-GST fusion protein. b The recognition of p7 and p8 by the representative serum samples of Patients 1, 2 and 7 was confirmed by Western blot
Fig. 4Core epitope identification. The core epitope in p7 and p8 was identified using a panel of truncated fusion peptides expressed with GST and 6xHis tag. a The core epitope of p7 is an 11-aa peptide 80KCLDVTDNLPE90, spanning positions K80 to E90. b The core epitope of p8 is an 8-aa peptide 90EKIIQFAE97, spanning positions E90 to E97. *P < 0.05 when compared with negative E. coli lysis using a Student’s t-test
Fig. 5Visualization of immunogenic epitopes in the tertiary structure of saposin-like domain of SjSP-13. The alignment modeling sequence of SjSP-13 was from K50 to K133. 90EKIIQFAE97 is a loop surface epitope, while 80KCLDVTDNLPE90 is an α-helix surface epitope. Key: red, 80KCLDVTDNLPE90; green, 90EKIIQFAE97
Fig. 6Comparison of the diagnostic performance of peptide-ELISA and SjSP-13-ELISA. The specific antibody to peptide (a) and SjSP-13 (c) in patients (n = 90) and healthy controls (n = 90) were evaluated by ELISA. ROC analysis was performed for peptide (b) and SjSP-13 (d). Data were compared using a Student’s t-test
Comparison of diagnostic validity of SjSP-13 peptide with SjSP-13 recombinant protein
| Antigen | Patients( | Healthy controls ( | ||||
|---|---|---|---|---|---|---|
| True positive | False negative | Sensitivity (%) | True negative | False positive | Specificity (%) | |
| Peptide | 69 | 21 | 76.7 (68.8–84.5) | 90 | 0 | 100 (100–100) |
| SjSP-13 | 83 | 7 | 92.2 (86.3–98.1) | 86 | 4 | 95.6 (91.6–99.5) |
* χ2 = 8.289, df = 1, P = 0.004 when compared by a chi-square test