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Design of a predicted MHC restricted short peptide immunodiagnostic and vaccine candidate for Fowl adenovirus C in chicken infection

Fowl adenoviruses (FAdVs) are the ethiologic agents of multiple pathologies in chicken. There are five different species of FAdVs grouped as FAdV-A, FAdV-B, FAdV-C, FAdV-D, and FAdV-E. It is of interest to develop immunodiagnostics and vaccine candidate for Peruvian FAdV-C in chicken infection using...

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Autores principales: Valdivia-Olarte, Hugo, Requena, David, Ramirez, Manuel, Saravia, Luis E, Izquierdo, Ray, Falconi-Agapito, Francesca, Zavaleta, Milagros, Best, Iván, Fernández-Díaz, Manolo, Zimic, Mirko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Biomedical Informatics 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4658644/
https://www.ncbi.nlm.nih.gov/pubmed/26664030
http://dx.doi.org/10.6026/97320630011460
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author Valdivia-Olarte, Hugo
Requena, David
Ramirez, Manuel
Saravia, Luis E
Izquierdo, Ray
Falconi-Agapito, Francesca
Zavaleta, Milagros
Best, Iván
Fernández-Díaz, Manolo
Zimic, Mirko
author_facet Valdivia-Olarte, Hugo
Requena, David
Ramirez, Manuel
Saravia, Luis E
Izquierdo, Ray
Falconi-Agapito, Francesca
Zavaleta, Milagros
Best, Iván
Fernández-Díaz, Manolo
Zimic, Mirko
author_sort Valdivia-Olarte, Hugo
collection PubMed
description Fowl adenoviruses (FAdVs) are the ethiologic agents of multiple pathologies in chicken. There are five different species of FAdVs grouped as FAdV-A, FAdV-B, FAdV-C, FAdV-D, and FAdV-E. It is of interest to develop immunodiagnostics and vaccine candidate for Peruvian FAdV-C in chicken infection using MHC restricted short peptide candidates. We sequenced the complete genome of one FAdV strain isolated from a chicken of a local farm. A total of 44 protein coding genes were identified in each genome. We sequenced twelve Cobb chicken MHC alleles from animals of different farms in the central coast of Peru, and subsequently determined three optimal human MHC-I and four optimal human MHC-II substitute alleles for MHC-peptide prediction. The potential MHC restricted short peptide epitope-like candidates were predicted using human specific (with determined suitable chicken substitutes) NetMHC MHC-peptide prediction model with web server features from all the FAdV genomes available. FAdV specific peptides with calculated binding values to known substituted chicken MHC-I and MHC-II were further filtered for diagnostics and potential vaccine epitopes. Promiscuity to the 3/4 optimal human MHC-I/II alleles and conservation among the available FAdV genomes was considered in this analysis. The localization on the surface of the protein was considered for class II predicted peptides. Thus, a set of class I and class II specific peptides from FAdV were reported in this study. Hence, a multiepitopic protein was built with these peptides, and subsequently tested to confirm the production of specific antibodies in chicken.
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spelling pubmed-46586442015-12-09 Design of a predicted MHC restricted short peptide immunodiagnostic and vaccine candidate for Fowl adenovirus C in chicken infection Valdivia-Olarte, Hugo Requena, David Ramirez, Manuel Saravia, Luis E Izquierdo, Ray Falconi-Agapito, Francesca Zavaleta, Milagros Best, Iván Fernández-Díaz, Manolo Zimic, Mirko Bioinformation Hypothesis Fowl adenoviruses (FAdVs) are the ethiologic agents of multiple pathologies in chicken. There are five different species of FAdVs grouped as FAdV-A, FAdV-B, FAdV-C, FAdV-D, and FAdV-E. It is of interest to develop immunodiagnostics and vaccine candidate for Peruvian FAdV-C in chicken infection using MHC restricted short peptide candidates. We sequenced the complete genome of one FAdV strain isolated from a chicken of a local farm. A total of 44 protein coding genes were identified in each genome. We sequenced twelve Cobb chicken MHC alleles from animals of different farms in the central coast of Peru, and subsequently determined three optimal human MHC-I and four optimal human MHC-II substitute alleles for MHC-peptide prediction. The potential MHC restricted short peptide epitope-like candidates were predicted using human specific (with determined suitable chicken substitutes) NetMHC MHC-peptide prediction model with web server features from all the FAdV genomes available. FAdV specific peptides with calculated binding values to known substituted chicken MHC-I and MHC-II were further filtered for diagnostics and potential vaccine epitopes. Promiscuity to the 3/4 optimal human MHC-I/II alleles and conservation among the available FAdV genomes was considered in this analysis. The localization on the surface of the protein was considered for class II predicted peptides. Thus, a set of class I and class II specific peptides from FAdV were reported in this study. Hence, a multiepitopic protein was built with these peptides, and subsequently tested to confirm the production of specific antibodies in chicken. Biomedical Informatics 2015-10-31 /pmc/articles/PMC4658644/ /pubmed/26664030 http://dx.doi.org/10.6026/97320630011460 Text en © 2015 Biomedical Informatics This is an Open Access article which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. This is distributed under the terms of the Creative Commons Attribution License.
spellingShingle Hypothesis
Valdivia-Olarte, Hugo
Requena, David
Ramirez, Manuel
Saravia, Luis E
Izquierdo, Ray
Falconi-Agapito, Francesca
Zavaleta, Milagros
Best, Iván
Fernández-Díaz, Manolo
Zimic, Mirko
Design of a predicted MHC restricted short peptide immunodiagnostic and vaccine candidate for Fowl adenovirus C in chicken infection
title Design of a predicted MHC restricted short peptide immunodiagnostic and vaccine candidate for Fowl adenovirus C in chicken infection
title_full Design of a predicted MHC restricted short peptide immunodiagnostic and vaccine candidate for Fowl adenovirus C in chicken infection
title_fullStr Design of a predicted MHC restricted short peptide immunodiagnostic and vaccine candidate for Fowl adenovirus C in chicken infection
title_full_unstemmed Design of a predicted MHC restricted short peptide immunodiagnostic and vaccine candidate for Fowl adenovirus C in chicken infection
title_short Design of a predicted MHC restricted short peptide immunodiagnostic and vaccine candidate for Fowl adenovirus C in chicken infection
title_sort design of a predicted mhc restricted short peptide immunodiagnostic and vaccine candidate for fowl adenovirus c in chicken infection
topic Hypothesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4658644/
https://www.ncbi.nlm.nih.gov/pubmed/26664030
http://dx.doi.org/10.6026/97320630011460
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