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Structurally Designed Attenuated Subunit Vaccines for S. aureus LukS-PV and LukF-PV Confer Protection in a Mouse Bacteremia Model

Previous efforts towards S. aureus vaccine development have largely focused on cell surface antigens to induce opsonophagocytic killing aimed at providing sterile immunity, a concept successfully applied to other Gram-positive pathogens such as Streptococcus pneumoniae. However, these approaches hav...

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Autores principales: Karauzum, Hatice, Adhikari, Rajan P., Sarwar, Jawad, Devi, V. Sathya, Abaandou, Laura, Haudenschild, Christian, Mahmoudieh, Mahta, Boroun, Atefeh R., Vu, Hong, Nguyen, Tam, Warfield, Kelly L., Shulenin, Sergey, Aman, M. Javad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3676412/
https://www.ncbi.nlm.nih.gov/pubmed/23762356
http://dx.doi.org/10.1371/journal.pone.0065384
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author Karauzum, Hatice
Adhikari, Rajan P.
Sarwar, Jawad
Devi, V. Sathya
Abaandou, Laura
Haudenschild, Christian
Mahmoudieh, Mahta
Boroun, Atefeh R.
Vu, Hong
Nguyen, Tam
Warfield, Kelly L.
Shulenin, Sergey
Aman, M. Javad
author_facet Karauzum, Hatice
Adhikari, Rajan P.
Sarwar, Jawad
Devi, V. Sathya
Abaandou, Laura
Haudenschild, Christian
Mahmoudieh, Mahta
Boroun, Atefeh R.
Vu, Hong
Nguyen, Tam
Warfield, Kelly L.
Shulenin, Sergey
Aman, M. Javad
author_sort Karauzum, Hatice
collection PubMed
description Previous efforts towards S. aureus vaccine development have largely focused on cell surface antigens to induce opsonophagocytic killing aimed at providing sterile immunity, a concept successfully applied to other Gram-positive pathogens such as Streptococcus pneumoniae. However, these approaches have largely failed, possibly in part due to the remarkable diversity of the staphylococcal virulence factors such as secreted immunosuppressive and tissue destructive toxins. S. aureus produces several pore-forming toxins including the single subunit alpha hemolysin as well as bicomponent leukotoxins such as Panton-Valentine leukocidin (PVL), gamma hemolysins (Hlg), and LukED. Here we report the generation of highly attenuated mutants of PVL subunits LukS-PV and LukF-PV that were rationally designed, based on an octameric structural model of the toxin, to be deficient in oligomerization. The attenuated subunit vaccines were highly immunogenic and showed significant protection in a mouse model of S. aureus USA300 sepsis. Protection against sepsis was also demonstrated by passive transfer of rabbit immunoglobulin raised against LukS-PV. Antibodies to LukS-PV inhibited the homologous oligomerization of LukS-PV with LukF-PV as well heterologous oligomerization with HlgB. Importantly, immune sera from mice vaccinated with the LukS mutant not only inhibited the PMN lytic activity produced by the PVL-positive USA300 but also blocked PMN lysis induced by supernatants of PVL-negative strains suggesting a broad protective activity towards other bicomponent toxins. These findings strongly support the novel concept of an anti-virulence, toxin-based vaccine intended for prevention of clinical S. aureus invasive disease, rather than achieving sterile immunity. Such a multivalent vaccine may include attenuated leukotoxins, alpha hemolysin, and superantigens.
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spelling pubmed-36764122013-06-12 Structurally Designed Attenuated Subunit Vaccines for S. aureus LukS-PV and LukF-PV Confer Protection in a Mouse Bacteremia Model Karauzum, Hatice Adhikari, Rajan P. Sarwar, Jawad Devi, V. Sathya Abaandou, Laura Haudenschild, Christian Mahmoudieh, Mahta Boroun, Atefeh R. Vu, Hong Nguyen, Tam Warfield, Kelly L. Shulenin, Sergey Aman, M. Javad PLoS One Research Article Previous efforts towards S. aureus vaccine development have largely focused on cell surface antigens to induce opsonophagocytic killing aimed at providing sterile immunity, a concept successfully applied to other Gram-positive pathogens such as Streptococcus pneumoniae. However, these approaches have largely failed, possibly in part due to the remarkable diversity of the staphylococcal virulence factors such as secreted immunosuppressive and tissue destructive toxins. S. aureus produces several pore-forming toxins including the single subunit alpha hemolysin as well as bicomponent leukotoxins such as Panton-Valentine leukocidin (PVL), gamma hemolysins (Hlg), and LukED. Here we report the generation of highly attenuated mutants of PVL subunits LukS-PV and LukF-PV that were rationally designed, based on an octameric structural model of the toxin, to be deficient in oligomerization. The attenuated subunit vaccines were highly immunogenic and showed significant protection in a mouse model of S. aureus USA300 sepsis. Protection against sepsis was also demonstrated by passive transfer of rabbit immunoglobulin raised against LukS-PV. Antibodies to LukS-PV inhibited the homologous oligomerization of LukS-PV with LukF-PV as well heterologous oligomerization with HlgB. Importantly, immune sera from mice vaccinated with the LukS mutant not only inhibited the PMN lytic activity produced by the PVL-positive USA300 but also blocked PMN lysis induced by supernatants of PVL-negative strains suggesting a broad protective activity towards other bicomponent toxins. These findings strongly support the novel concept of an anti-virulence, toxin-based vaccine intended for prevention of clinical S. aureus invasive disease, rather than achieving sterile immunity. Such a multivalent vaccine may include attenuated leukotoxins, alpha hemolysin, and superantigens. Public Library of Science 2013-06-07 /pmc/articles/PMC3676412/ /pubmed/23762356 http://dx.doi.org/10.1371/journal.pone.0065384 Text en © 2013 Karauzum 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Karauzum, Hatice
Adhikari, Rajan P.
Sarwar, Jawad
Devi, V. Sathya
Abaandou, Laura
Haudenschild, Christian
Mahmoudieh, Mahta
Boroun, Atefeh R.
Vu, Hong
Nguyen, Tam
Warfield, Kelly L.
Shulenin, Sergey
Aman, M. Javad
Structurally Designed Attenuated Subunit Vaccines for S. aureus LukS-PV and LukF-PV Confer Protection in a Mouse Bacteremia Model
title Structurally Designed Attenuated Subunit Vaccines for S. aureus LukS-PV and LukF-PV Confer Protection in a Mouse Bacteremia Model
title_full Structurally Designed Attenuated Subunit Vaccines for S. aureus LukS-PV and LukF-PV Confer Protection in a Mouse Bacteremia Model
title_fullStr Structurally Designed Attenuated Subunit Vaccines for S. aureus LukS-PV and LukF-PV Confer Protection in a Mouse Bacteremia Model
title_full_unstemmed Structurally Designed Attenuated Subunit Vaccines for S. aureus LukS-PV and LukF-PV Confer Protection in a Mouse Bacteremia Model
title_short Structurally Designed Attenuated Subunit Vaccines for S. aureus LukS-PV and LukF-PV Confer Protection in a Mouse Bacteremia Model
title_sort structurally designed attenuated subunit vaccines for s. aureus luks-pv and lukf-pv confer protection in a mouse bacteremia model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3676412/
https://www.ncbi.nlm.nih.gov/pubmed/23762356
http://dx.doi.org/10.1371/journal.pone.0065384
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