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Design of a Multi-Epitope Vaccine against Tuberculosis from Mycobacterium tuberculosis PE_PGRS49 and PE_PGRS56 Proteins by Reverse Vaccinology

Tuberculosis is a disease caused by Mycobacterium tuberculosis, representing the second leading cause of death by an infectious agent worldwide. The available vaccine against this disease has insufficient coverage and variable efficacy, accounting for a high number of cases worldwide. In fact, an es...

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Autores principales: Ruaro-Moreno, Maritriny, Monterrubio-López, Gloria Paulina, Reyes-Gastellou, Abraham, Castelán-Vega, Juan Arturo, Jiménez-Alberto, Alicia, Aparicio-Ozores, Gerardo, Delgadillo-Gutiérrez, Karen, González-Y-Merchand, Jorge Alberto, Ribas-Aparicio, Rosa María
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10385543/
https://www.ncbi.nlm.nih.gov/pubmed/37512820
http://dx.doi.org/10.3390/microorganisms11071647
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author Ruaro-Moreno, Maritriny
Monterrubio-López, Gloria Paulina
Reyes-Gastellou, Abraham
Castelán-Vega, Juan Arturo
Jiménez-Alberto, Alicia
Aparicio-Ozores, Gerardo
Delgadillo-Gutiérrez, Karen
González-Y-Merchand, Jorge Alberto
Ribas-Aparicio, Rosa María
author_facet Ruaro-Moreno, Maritriny
Monterrubio-López, Gloria Paulina
Reyes-Gastellou, Abraham
Castelán-Vega, Juan Arturo
Jiménez-Alberto, Alicia
Aparicio-Ozores, Gerardo
Delgadillo-Gutiérrez, Karen
González-Y-Merchand, Jorge Alberto
Ribas-Aparicio, Rosa María
author_sort Ruaro-Moreno, Maritriny
collection PubMed
description Tuberculosis is a disease caused by Mycobacterium tuberculosis, representing the second leading cause of death by an infectious agent worldwide. The available vaccine against this disease has insufficient coverage and variable efficacy, accounting for a high number of cases worldwide. In fact, an estimated third of the world’s population has a latent infection. Therefore, developing new vaccines is crucial to preventing it. In this study, the highly antigenic PE_PGRS49 and PE_PGRS56 proteins were analyzed. These proteins were used for predicting T- and B-cell epitopes and for human leukocyte antigen (HLA) protein binding efficiency. Epitopes GGAGGNGSLSS, FAGAGGQGGLGG, GIGGGTQSATGLG (PE_PGRS49), and GTGWNGGKGDTG (PE_PGRS56) were selected based on their best physicochemical, antigenic, non-allergenic, and non-toxic properties and coupled to HLA I and HLA II structures for in silico assays. A construct with an adjuvant (RS09) plus each epitope joined by GPGPG linkers was designed, and the stability of the HLA-coupled construct was further evaluated by molecular dynamics simulations. Although experimental and in vivo studies are still necessary to ensure its protective effect against the disease, this study shows that the vaccine construct is dynamically stable and potentially effective against tuberculosis.
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spelling pubmed-103855432023-07-30 Design of a Multi-Epitope Vaccine against Tuberculosis from Mycobacterium tuberculosis PE_PGRS49 and PE_PGRS56 Proteins by Reverse Vaccinology Ruaro-Moreno, Maritriny Monterrubio-López, Gloria Paulina Reyes-Gastellou, Abraham Castelán-Vega, Juan Arturo Jiménez-Alberto, Alicia Aparicio-Ozores, Gerardo Delgadillo-Gutiérrez, Karen González-Y-Merchand, Jorge Alberto Ribas-Aparicio, Rosa María Microorganisms Article Tuberculosis is a disease caused by Mycobacterium tuberculosis, representing the second leading cause of death by an infectious agent worldwide. The available vaccine against this disease has insufficient coverage and variable efficacy, accounting for a high number of cases worldwide. In fact, an estimated third of the world’s population has a latent infection. Therefore, developing new vaccines is crucial to preventing it. In this study, the highly antigenic PE_PGRS49 and PE_PGRS56 proteins were analyzed. These proteins were used for predicting T- and B-cell epitopes and for human leukocyte antigen (HLA) protein binding efficiency. Epitopes GGAGGNGSLSS, FAGAGGQGGLGG, GIGGGTQSATGLG (PE_PGRS49), and GTGWNGGKGDTG (PE_PGRS56) were selected based on their best physicochemical, antigenic, non-allergenic, and non-toxic properties and coupled to HLA I and HLA II structures for in silico assays. A construct with an adjuvant (RS09) plus each epitope joined by GPGPG linkers was designed, and the stability of the HLA-coupled construct was further evaluated by molecular dynamics simulations. Although experimental and in vivo studies are still necessary to ensure its protective effect against the disease, this study shows that the vaccine construct is dynamically stable and potentially effective against tuberculosis. MDPI 2023-06-24 /pmc/articles/PMC10385543/ /pubmed/37512820 http://dx.doi.org/10.3390/microorganisms11071647 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ruaro-Moreno, Maritriny
Monterrubio-López, Gloria Paulina
Reyes-Gastellou, Abraham
Castelán-Vega, Juan Arturo
Jiménez-Alberto, Alicia
Aparicio-Ozores, Gerardo
Delgadillo-Gutiérrez, Karen
González-Y-Merchand, Jorge Alberto
Ribas-Aparicio, Rosa María
Design of a Multi-Epitope Vaccine against Tuberculosis from Mycobacterium tuberculosis PE_PGRS49 and PE_PGRS56 Proteins by Reverse Vaccinology
title Design of a Multi-Epitope Vaccine against Tuberculosis from Mycobacterium tuberculosis PE_PGRS49 and PE_PGRS56 Proteins by Reverse Vaccinology
title_full Design of a Multi-Epitope Vaccine against Tuberculosis from Mycobacterium tuberculosis PE_PGRS49 and PE_PGRS56 Proteins by Reverse Vaccinology
title_fullStr Design of a Multi-Epitope Vaccine against Tuberculosis from Mycobacterium tuberculosis PE_PGRS49 and PE_PGRS56 Proteins by Reverse Vaccinology
title_full_unstemmed Design of a Multi-Epitope Vaccine against Tuberculosis from Mycobacterium tuberculosis PE_PGRS49 and PE_PGRS56 Proteins by Reverse Vaccinology
title_short Design of a Multi-Epitope Vaccine against Tuberculosis from Mycobacterium tuberculosis PE_PGRS49 and PE_PGRS56 Proteins by Reverse Vaccinology
title_sort design of a multi-epitope vaccine against tuberculosis from mycobacterium tuberculosis pe_pgrs49 and pe_pgrs56 proteins by reverse vaccinology
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10385543/
https://www.ncbi.nlm.nih.gov/pubmed/37512820
http://dx.doi.org/10.3390/microorganisms11071647
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