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Neisseria Heparin Binding Antigen is targeted by the human alternative pathway C3-convertase

Neisserial Heparin Binding Antigen (NHBA) is a surface-exposed lipoprotein specific for Neisseria and constitutes one of the three main protein antigens of the Bexsero vaccine. Meningococcal and human proteases, cleave NHBA protein upstream or downstream of a conserved Arg-rich region, respectively....

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Autores principales: Di Fede, Martina, Biagini, Massimiliano, Cartocci, Elena, Parillo, Carlo, Greco, Alessandra, Martinelli, Manuele, Marchi, Sara, Pezzicoli, Alfredo, Delany, Isabel, Rossi Paccani, Silvia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5868813/
https://www.ncbi.nlm.nih.gov/pubmed/29579105
http://dx.doi.org/10.1371/journal.pone.0194662
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author Di Fede, Martina
Biagini, Massimiliano
Cartocci, Elena
Parillo, Carlo
Greco, Alessandra
Martinelli, Manuele
Marchi, Sara
Pezzicoli, Alfredo
Delany, Isabel
Rossi Paccani, Silvia
author_facet Di Fede, Martina
Biagini, Massimiliano
Cartocci, Elena
Parillo, Carlo
Greco, Alessandra
Martinelli, Manuele
Marchi, Sara
Pezzicoli, Alfredo
Delany, Isabel
Rossi Paccani, Silvia
author_sort Di Fede, Martina
collection PubMed
description Neisserial Heparin Binding Antigen (NHBA) is a surface-exposed lipoprotein specific for Neisseria and constitutes one of the three main protein antigens of the Bexsero vaccine. Meningococcal and human proteases, cleave NHBA protein upstream or downstream of a conserved Arg-rich region, respectively. The cleavage results in the release of the C-terminal portion of the protein. The C-terminal fragment originating from the processing of meningococcal proteases, referred to as C2 fragment, exerts a toxic effect on endothelial cells altering the endothelial permeability. In this work, we reported that recombinant C2 fragment has no influence on the integrity of human airway epithelial cell monolayers, consistent with previous findings showing that Neisseria meningitidis traverses the epithelial barrier without disrupting the junctional structures. We showed that epithelial cells constantly secrete proteases responsible for a rapid processing of C2 fragment, generating a new fragment that does not contain the Arg-rich region, a putative docking domain reported to be essential for C2-mediated toxic effect. Moreover, we found that the C3-convertase of the alternative complement pathway is one of the proteases responsible for this processing. Overall, our data provide new insights on the cleavage of NHBA protein during meningococcal infection. NHBA cleavage may occur at different stages of the infection, and it likely has a different role depending on the environment the bacterium is interacting with.
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spelling pubmed-58688132018-04-06 Neisseria Heparin Binding Antigen is targeted by the human alternative pathway C3-convertase Di Fede, Martina Biagini, Massimiliano Cartocci, Elena Parillo, Carlo Greco, Alessandra Martinelli, Manuele Marchi, Sara Pezzicoli, Alfredo Delany, Isabel Rossi Paccani, Silvia PLoS One Research Article Neisserial Heparin Binding Antigen (NHBA) is a surface-exposed lipoprotein specific for Neisseria and constitutes one of the three main protein antigens of the Bexsero vaccine. Meningococcal and human proteases, cleave NHBA protein upstream or downstream of a conserved Arg-rich region, respectively. The cleavage results in the release of the C-terminal portion of the protein. The C-terminal fragment originating from the processing of meningococcal proteases, referred to as C2 fragment, exerts a toxic effect on endothelial cells altering the endothelial permeability. In this work, we reported that recombinant C2 fragment has no influence on the integrity of human airway epithelial cell monolayers, consistent with previous findings showing that Neisseria meningitidis traverses the epithelial barrier without disrupting the junctional structures. We showed that epithelial cells constantly secrete proteases responsible for a rapid processing of C2 fragment, generating a new fragment that does not contain the Arg-rich region, a putative docking domain reported to be essential for C2-mediated toxic effect. Moreover, we found that the C3-convertase of the alternative complement pathway is one of the proteases responsible for this processing. Overall, our data provide new insights on the cleavage of NHBA protein during meningococcal infection. NHBA cleavage may occur at different stages of the infection, and it likely has a different role depending on the environment the bacterium is interacting with. Public Library of Science 2018-03-26 /pmc/articles/PMC5868813/ /pubmed/29579105 http://dx.doi.org/10.1371/journal.pone.0194662 Text en © 2018 Di Fede et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Di Fede, Martina
Biagini, Massimiliano
Cartocci, Elena
Parillo, Carlo
Greco, Alessandra
Martinelli, Manuele
Marchi, Sara
Pezzicoli, Alfredo
Delany, Isabel
Rossi Paccani, Silvia
Neisseria Heparin Binding Antigen is targeted by the human alternative pathway C3-convertase
title Neisseria Heparin Binding Antigen is targeted by the human alternative pathway C3-convertase
title_full Neisseria Heparin Binding Antigen is targeted by the human alternative pathway C3-convertase
title_fullStr Neisseria Heparin Binding Antigen is targeted by the human alternative pathway C3-convertase
title_full_unstemmed Neisseria Heparin Binding Antigen is targeted by the human alternative pathway C3-convertase
title_short Neisseria Heparin Binding Antigen is targeted by the human alternative pathway C3-convertase
title_sort neisseria heparin binding antigen is targeted by the human alternative pathway c3-convertase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5868813/
https://www.ncbi.nlm.nih.gov/pubmed/29579105
http://dx.doi.org/10.1371/journal.pone.0194662
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