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Babesia Bovis Ligand-Receptor Interaction: AMA-1 Contains Small Regions Governing Bovine Erythrocyte Binding

Apical membrane antigen 1 is a microneme protein which plays an indispensable role during Apicomplexa parasite invasion. The detailed mechanism of AMA-1 molecular interaction with its receptor on bovine erythrocytes has not been completely defined in Babesia bovis. This study was focused on identify...

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Autores principales: Cuy-Chaparro, Laura, Bohórquez, Michel David, Arévalo-Pinzón, Gabriela, Castañeda-Ramírez, Jeimmy Johana, Suárez, Carlos Fernando, Pabón, Laura, Ordóñez, Diego, Gallego-López, Gina Marcela, Suárez, Carlos Esteban, Moreno-Pérez, Darwin Andrés, Patarroyo, Manuel Alfonso
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828228/
https://www.ncbi.nlm.nih.gov/pubmed/33450807
http://dx.doi.org/10.3390/ijms22020714
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author Cuy-Chaparro, Laura
Bohórquez, Michel David
Arévalo-Pinzón, Gabriela
Castañeda-Ramírez, Jeimmy Johana
Suárez, Carlos Fernando
Pabón, Laura
Ordóñez, Diego
Gallego-López, Gina Marcela
Suárez, Carlos Esteban
Moreno-Pérez, Darwin Andrés
Patarroyo, Manuel Alfonso
author_facet Cuy-Chaparro, Laura
Bohórquez, Michel David
Arévalo-Pinzón, Gabriela
Castañeda-Ramírez, Jeimmy Johana
Suárez, Carlos Fernando
Pabón, Laura
Ordóñez, Diego
Gallego-López, Gina Marcela
Suárez, Carlos Esteban
Moreno-Pérez, Darwin Andrés
Patarroyo, Manuel Alfonso
author_sort Cuy-Chaparro, Laura
collection PubMed
description Apical membrane antigen 1 is a microneme protein which plays an indispensable role during Apicomplexa parasite invasion. The detailed mechanism of AMA-1 molecular interaction with its receptor on bovine erythrocytes has not been completely defined in Babesia bovis. This study was focused on identifying the minimum B. bovis AMA-1-derived regions governing specific and high-affinity binding to its target cells. Different approaches were used for detecting ama-1 locus genetic variability and natural selection signatures. The binding properties of twelve highly conserved 20-residue-long peptides were evaluated using a sensitive and specific binding assay based on radio-iodination. B. bovis AMA-1 ectodomain structure was modelled and refined using molecular modelling software. NetMHCIIpan software was used for calculating B- and T-cell epitopes. The B. bovis ama-1 gene had regions under functional constraint, having the highest negative selective pressure intensity in the Domain I encoding region. Interestingly, B. bovis AMA-1-DI ((100)YMQKFDIPRNHGSGIYVDLG(119) and (120)GYESVGSKSYRMPVGKCPVV(139)) and DII ((302)CPMHPVRDAIFGKWSGGSCV(321))-derived peptides had high specificity interaction with erythrocytes and bound to a chymotrypsin and neuraminidase-treatment sensitive receptor. DI-derived peptides appear to be exposed on the protein’s surface and contain predicted B- and T-cell epitopes. These findings provide data (for the first-time) concerning B. bovis AMA-1 functional subunits which are important for establishing receptor-ligand interactions which could be used in synthetic vaccine development.
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spelling pubmed-78282282021-01-25 Babesia Bovis Ligand-Receptor Interaction: AMA-1 Contains Small Regions Governing Bovine Erythrocyte Binding Cuy-Chaparro, Laura Bohórquez, Michel David Arévalo-Pinzón, Gabriela Castañeda-Ramírez, Jeimmy Johana Suárez, Carlos Fernando Pabón, Laura Ordóñez, Diego Gallego-López, Gina Marcela Suárez, Carlos Esteban Moreno-Pérez, Darwin Andrés Patarroyo, Manuel Alfonso Int J Mol Sci Article Apical membrane antigen 1 is a microneme protein which plays an indispensable role during Apicomplexa parasite invasion. The detailed mechanism of AMA-1 molecular interaction with its receptor on bovine erythrocytes has not been completely defined in Babesia bovis. This study was focused on identifying the minimum B. bovis AMA-1-derived regions governing specific and high-affinity binding to its target cells. Different approaches were used for detecting ama-1 locus genetic variability and natural selection signatures. The binding properties of twelve highly conserved 20-residue-long peptides were evaluated using a sensitive and specific binding assay based on radio-iodination. B. bovis AMA-1 ectodomain structure was modelled and refined using molecular modelling software. NetMHCIIpan software was used for calculating B- and T-cell epitopes. The B. bovis ama-1 gene had regions under functional constraint, having the highest negative selective pressure intensity in the Domain I encoding region. Interestingly, B. bovis AMA-1-DI ((100)YMQKFDIPRNHGSGIYVDLG(119) and (120)GYESVGSKSYRMPVGKCPVV(139)) and DII ((302)CPMHPVRDAIFGKWSGGSCV(321))-derived peptides had high specificity interaction with erythrocytes and bound to a chymotrypsin and neuraminidase-treatment sensitive receptor. DI-derived peptides appear to be exposed on the protein’s surface and contain predicted B- and T-cell epitopes. These findings provide data (for the first-time) concerning B. bovis AMA-1 functional subunits which are important for establishing receptor-ligand interactions which could be used in synthetic vaccine development. MDPI 2021-01-13 /pmc/articles/PMC7828228/ /pubmed/33450807 http://dx.doi.org/10.3390/ijms22020714 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cuy-Chaparro, Laura
Bohórquez, Michel David
Arévalo-Pinzón, Gabriela
Castañeda-Ramírez, Jeimmy Johana
Suárez, Carlos Fernando
Pabón, Laura
Ordóñez, Diego
Gallego-López, Gina Marcela
Suárez, Carlos Esteban
Moreno-Pérez, Darwin Andrés
Patarroyo, Manuel Alfonso
Babesia Bovis Ligand-Receptor Interaction: AMA-1 Contains Small Regions Governing Bovine Erythrocyte Binding
title Babesia Bovis Ligand-Receptor Interaction: AMA-1 Contains Small Regions Governing Bovine Erythrocyte Binding
title_full Babesia Bovis Ligand-Receptor Interaction: AMA-1 Contains Small Regions Governing Bovine Erythrocyte Binding
title_fullStr Babesia Bovis Ligand-Receptor Interaction: AMA-1 Contains Small Regions Governing Bovine Erythrocyte Binding
title_full_unstemmed Babesia Bovis Ligand-Receptor Interaction: AMA-1 Contains Small Regions Governing Bovine Erythrocyte Binding
title_short Babesia Bovis Ligand-Receptor Interaction: AMA-1 Contains Small Regions Governing Bovine Erythrocyte Binding
title_sort babesia bovis ligand-receptor interaction: ama-1 contains small regions governing bovine erythrocyte binding
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828228/
https://www.ncbi.nlm.nih.gov/pubmed/33450807
http://dx.doi.org/10.3390/ijms22020714
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