Cargando…

Chagas disease-specific antigens: characterization of epitopes in CRA/FRA by synthetic peptide mapping and evaluation by ELISA-peptide assay

BACKGROUND: The identification of epitopes in proteins recognized by medically relevant antibodies is useful for the development of peptide-based diagnostics and vaccines. In this study, epitopes in the cytoplasmic repetitive antigen (CRA) and flagellar repetitive antigen (FRA) proteins from Trypano...

Descripción completa

Detalles Bibliográficos
Autores principales: Bottino, Carolina G, Gomes, Luciano P, Pereira, José B, Coura, José R, Provance, David William, De-Simone, Salvatore G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3890492/
https://www.ncbi.nlm.nih.gov/pubmed/24299278
http://dx.doi.org/10.1186/1471-2334-13-568
_version_ 1782299259778891776
author Bottino, Carolina G
Gomes, Luciano P
Pereira, José B
Coura, José R
Provance, David William
De-Simone, Salvatore G
author_facet Bottino, Carolina G
Gomes, Luciano P
Pereira, José B
Coura, José R
Provance, David William
De-Simone, Salvatore G
author_sort Bottino, Carolina G
collection PubMed
description BACKGROUND: The identification of epitopes in proteins recognized by medically relevant antibodies is useful for the development of peptide-based diagnostics and vaccines. In this study, epitopes in the cytoplasmic repetitive antigen (CRA) and flagellar repetitive antigen (FRA) proteins from Trypanosoma cruzi were identified using synthetic peptide techniques and pooled sera from Chagasic patients. The epitopes were further assayed with an ELISA assay based on synthetic peptides. METHODS: Twenty-two overlapping synthetic peptides representing the coding sequence of the T. cruzi CRA and FRA proteins were assessed by a Spot-synthesis array analysis using sera donated by patients with Chagas disease. Shorter peptides were selected that represented the determined epitopes and synthesized by solid phase synthesis to evaluate the patterns of cross-reactivities and discrimination through an ELISA-diagnostic assay. RESULTS: The peptide Spot-synthesis array successfully identified two IgG antigenic determinants in the CRA protein and four in FRA. Bioinformatics suggested that the CRA antigens were unique to T. cruzi while the FRA antigen showed similarity with sequences present within various proteins from Leishmania sp. Subsequently, shorter peptides representing the CRA-1, CRA-2 and FRA-1 epitopes were synthesized by solid phase synthesis and assayed by an ELISA-diagnostic assay. The CRA antigens gave a high discrimination between Chagasic, Leishmaniasis and T. cruzi-uninfected serum. A sensitivity and specificity of 100% was calculated for CRA. While the FRA antigen showed a slightly lower sensitivity (91.6%), its specificity was only 60%. CONCLUSIONS: The epitopes recognized by human anti-T. cruzi antibodies have been precisely located in two biomarkers of T. cruzi, CRA and FRA. The results from screening a panel of patient sera through an ELISA assay based on peptides representing these epitopes strongly suggest that the sequences from CRA would be useful for the development of diagnostic reagents that could improve upon the sensitivity and specificity of currently available diagnostic tests. Overall, the results provide further evidence of the usefulness of identifying specific linear B-cell epitopes for improving diagnostic tools.
format Online
Article
Text
id pubmed-3890492
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-38904922014-01-15 Chagas disease-specific antigens: characterization of epitopes in CRA/FRA by synthetic peptide mapping and evaluation by ELISA-peptide assay Bottino, Carolina G Gomes, Luciano P Pereira, José B Coura, José R Provance, David William De-Simone, Salvatore G BMC Infect Dis Research Article BACKGROUND: The identification of epitopes in proteins recognized by medically relevant antibodies is useful for the development of peptide-based diagnostics and vaccines. In this study, epitopes in the cytoplasmic repetitive antigen (CRA) and flagellar repetitive antigen (FRA) proteins from Trypanosoma cruzi were identified using synthetic peptide techniques and pooled sera from Chagasic patients. The epitopes were further assayed with an ELISA assay based on synthetic peptides. METHODS: Twenty-two overlapping synthetic peptides representing the coding sequence of the T. cruzi CRA and FRA proteins were assessed by a Spot-synthesis array analysis using sera donated by patients with Chagas disease. Shorter peptides were selected that represented the determined epitopes and synthesized by solid phase synthesis to evaluate the patterns of cross-reactivities and discrimination through an ELISA-diagnostic assay. RESULTS: The peptide Spot-synthesis array successfully identified two IgG antigenic determinants in the CRA protein and four in FRA. Bioinformatics suggested that the CRA antigens were unique to T. cruzi while the FRA antigen showed similarity with sequences present within various proteins from Leishmania sp. Subsequently, shorter peptides representing the CRA-1, CRA-2 and FRA-1 epitopes were synthesized by solid phase synthesis and assayed by an ELISA-diagnostic assay. The CRA antigens gave a high discrimination between Chagasic, Leishmaniasis and T. cruzi-uninfected serum. A sensitivity and specificity of 100% was calculated for CRA. While the FRA antigen showed a slightly lower sensitivity (91.6%), its specificity was only 60%. CONCLUSIONS: The epitopes recognized by human anti-T. cruzi antibodies have been precisely located in two biomarkers of T. cruzi, CRA and FRA. The results from screening a panel of patient sera through an ELISA assay based on peptides representing these epitopes strongly suggest that the sequences from CRA would be useful for the development of diagnostic reagents that could improve upon the sensitivity and specificity of currently available diagnostic tests. Overall, the results provide further evidence of the usefulness of identifying specific linear B-cell epitopes for improving diagnostic tools. BioMed Central 2013-12-03 /pmc/articles/PMC3890492/ /pubmed/24299278 http://dx.doi.org/10.1186/1471-2334-13-568 Text en Copyright © 2013 Bottino et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Bottino, Carolina G
Gomes, Luciano P
Pereira, José B
Coura, José R
Provance, David William
De-Simone, Salvatore G
Chagas disease-specific antigens: characterization of epitopes in CRA/FRA by synthetic peptide mapping and evaluation by ELISA-peptide assay
title Chagas disease-specific antigens: characterization of epitopes in CRA/FRA by synthetic peptide mapping and evaluation by ELISA-peptide assay
title_full Chagas disease-specific antigens: characterization of epitopes in CRA/FRA by synthetic peptide mapping and evaluation by ELISA-peptide assay
title_fullStr Chagas disease-specific antigens: characterization of epitopes in CRA/FRA by synthetic peptide mapping and evaluation by ELISA-peptide assay
title_full_unstemmed Chagas disease-specific antigens: characterization of epitopes in CRA/FRA by synthetic peptide mapping and evaluation by ELISA-peptide assay
title_short Chagas disease-specific antigens: characterization of epitopes in CRA/FRA by synthetic peptide mapping and evaluation by ELISA-peptide assay
title_sort chagas disease-specific antigens: characterization of epitopes in cra/fra by synthetic peptide mapping and evaluation by elisa-peptide assay
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3890492/
https://www.ncbi.nlm.nih.gov/pubmed/24299278
http://dx.doi.org/10.1186/1471-2334-13-568
work_keys_str_mv AT bottinocarolinag chagasdiseasespecificantigenscharacterizationofepitopesincrafrabysyntheticpeptidemappingandevaluationbyelisapeptideassay
AT gomeslucianop chagasdiseasespecificantigenscharacterizationofepitopesincrafrabysyntheticpeptidemappingandevaluationbyelisapeptideassay
AT pereirajoseb chagasdiseasespecificantigenscharacterizationofepitopesincrafrabysyntheticpeptidemappingandevaluationbyelisapeptideassay
AT courajoser chagasdiseasespecificantigenscharacterizationofepitopesincrafrabysyntheticpeptidemappingandevaluationbyelisapeptideassay
AT provancedavidwilliam chagasdiseasespecificantigenscharacterizationofepitopesincrafrabysyntheticpeptidemappingandevaluationbyelisapeptideassay
AT desimonesalvatoreg chagasdiseasespecificantigenscharacterizationofepitopesincrafrabysyntheticpeptidemappingandevaluationbyelisapeptideassay