Cargando…
Targeted Amino Acid Substitutions Impair Streptolysin O Toxicity and Group A Streptococcus Virulence
Streptolysin O is a potent pore-forming toxin produced by group A Streptococcus. The aims of the present study were to dissect the relative contributions of different structural domains of the protein to hemolytic activity, to obtain a detoxified form of streptolysin O amenable to human vaccine form...
Autores principales: | , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society of Microbiology
2013
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3546560/ https://www.ncbi.nlm.nih.gov/pubmed/23300245 http://dx.doi.org/10.1128/mBio.00387-12 |
_version_ | 1782256071132315648 |
---|---|
author | Chiarot, Emiliano Faralla, Cristina Chiappini, Nico Tuscano, Giovanna Falugi, Fabiana Gambellini, Gabriella Taddei, Annarita Capo, Sabrina Cartocci, Elena Veggi, Daniele Corrado, Alessia Mangiavacchi, Simona Tavarini, Simona Scarselli, Maria Janulczyk, Robert Grandi, Guido Margarit, Immaculada Bensi, Giuliano |
author_facet | Chiarot, Emiliano Faralla, Cristina Chiappini, Nico Tuscano, Giovanna Falugi, Fabiana Gambellini, Gabriella Taddei, Annarita Capo, Sabrina Cartocci, Elena Veggi, Daniele Corrado, Alessia Mangiavacchi, Simona Tavarini, Simona Scarselli, Maria Janulczyk, Robert Grandi, Guido Margarit, Immaculada Bensi, Giuliano |
author_sort | Chiarot, Emiliano |
collection | PubMed |
description | Streptolysin O is a potent pore-forming toxin produced by group A Streptococcus. The aims of the present study were to dissect the relative contributions of different structural domains of the protein to hemolytic activity, to obtain a detoxified form of streptolysin O amenable to human vaccine formulation, and to investigate the role of streptolysin O-specific antibodies in protection against group A Streptococcus infection. On the basis of in silico structural predictions, we introduced two amino acid substitutions, one in the proline-rich domain 1 and the other in the conserved undecapeptide loop in domain 4. The resulting streptolysin O derivative showed no toxicity, was highly impaired in binding to eukaryotic cells, and was unable to form organized oligomeric structures on the cell surface. However, it was fully capable of conferring consistent protection in a murine model of group A Streptococcus infection. When we engineered a streptococcal strain to express the double-mutated streptolysin O, a drastic reduction in virulence as well as a diminished capacity to kill immune cells recruited at the infection site was observed. Furthermore, when mice immunized with the toxoid were challenged with the wild-type and mutant strains, protection only against the wild-type strain, not against the strain expressing the double-mutated streptolysin O, was obtained. We conclude that protection occurs by antibody-mediated neutralization of active toxin. |
format | Online Article Text |
id | pubmed-3546560 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | American Society of Microbiology |
record_format | MEDLINE/PubMed |
spelling | pubmed-35465602013-01-16 Targeted Amino Acid Substitutions Impair Streptolysin O Toxicity and Group A Streptococcus Virulence Chiarot, Emiliano Faralla, Cristina Chiappini, Nico Tuscano, Giovanna Falugi, Fabiana Gambellini, Gabriella Taddei, Annarita Capo, Sabrina Cartocci, Elena Veggi, Daniele Corrado, Alessia Mangiavacchi, Simona Tavarini, Simona Scarselli, Maria Janulczyk, Robert Grandi, Guido Margarit, Immaculada Bensi, Giuliano mBio Research Article Streptolysin O is a potent pore-forming toxin produced by group A Streptococcus. The aims of the present study were to dissect the relative contributions of different structural domains of the protein to hemolytic activity, to obtain a detoxified form of streptolysin O amenable to human vaccine formulation, and to investigate the role of streptolysin O-specific antibodies in protection against group A Streptococcus infection. On the basis of in silico structural predictions, we introduced two amino acid substitutions, one in the proline-rich domain 1 and the other in the conserved undecapeptide loop in domain 4. The resulting streptolysin O derivative showed no toxicity, was highly impaired in binding to eukaryotic cells, and was unable to form organized oligomeric structures on the cell surface. However, it was fully capable of conferring consistent protection in a murine model of group A Streptococcus infection. When we engineered a streptococcal strain to express the double-mutated streptolysin O, a drastic reduction in virulence as well as a diminished capacity to kill immune cells recruited at the infection site was observed. Furthermore, when mice immunized with the toxoid were challenged with the wild-type and mutant strains, protection only against the wild-type strain, not against the strain expressing the double-mutated streptolysin O, was obtained. We conclude that protection occurs by antibody-mediated neutralization of active toxin. American Society of Microbiology 2013-01-08 /pmc/articles/PMC3546560/ /pubmed/23300245 http://dx.doi.org/10.1128/mBio.00387-12 Text en Copyright © 2013 Chiarot et al. http://creativecommons.org/licenses/by-nc-sa/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-Noncommercial-ShareAlike 3.0 Unported (http://creativecommons.org/licenses/by-nc-sa/3.0/) license, which permits unrestricted noncommercial use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Chiarot, Emiliano Faralla, Cristina Chiappini, Nico Tuscano, Giovanna Falugi, Fabiana Gambellini, Gabriella Taddei, Annarita Capo, Sabrina Cartocci, Elena Veggi, Daniele Corrado, Alessia Mangiavacchi, Simona Tavarini, Simona Scarselli, Maria Janulczyk, Robert Grandi, Guido Margarit, Immaculada Bensi, Giuliano Targeted Amino Acid Substitutions Impair Streptolysin O Toxicity and Group A Streptococcus Virulence |
title | Targeted Amino Acid Substitutions Impair Streptolysin O Toxicity and Group A Streptococcus Virulence |
title_full | Targeted Amino Acid Substitutions Impair Streptolysin O Toxicity and Group A Streptococcus Virulence |
title_fullStr | Targeted Amino Acid Substitutions Impair Streptolysin O Toxicity and Group A Streptococcus Virulence |
title_full_unstemmed | Targeted Amino Acid Substitutions Impair Streptolysin O Toxicity and Group A Streptococcus Virulence |
title_short | Targeted Amino Acid Substitutions Impair Streptolysin O Toxicity and Group A Streptococcus Virulence |
title_sort | targeted amino acid substitutions impair streptolysin o toxicity and group a streptococcus virulence |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3546560/ https://www.ncbi.nlm.nih.gov/pubmed/23300245 http://dx.doi.org/10.1128/mBio.00387-12 |
work_keys_str_mv | AT chiarotemiliano targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT farallacristina targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT chiappininico targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT tuscanogiovanna targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT falugifabiana targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT gambellinigabriella targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT taddeiannarita targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT caposabrina targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT cartoccielena targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT veggidaniele targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT corradoalessia targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT mangiavacchisimona targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT tavarinisimona targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT scarsellimaria targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT janulczykrobert targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT grandiguido targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT margaritimmaculada targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence AT bensigiuliano targetedaminoacidsubstitutionsimpairstreptolysinotoxicityandgroupastreptococcusvirulence |