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A gel-free proteomic-based method for the characterization of Bordetella pertussis clinical isolates

Bordetella pertussis (Bp) is the etiologic agent of pertussis or whooping cough, a highly contagious respiratory disease occurring primarily in infants and young children. Although vaccine preventable, pertussis cases have increased over the years leading researchers to re-evaluate vaccine control s...

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Autores principales: Williamson, Yulanda M., Moura, Hercules, Simmons, Kaneatra, Whitmon, Jennifer, Melnick, Nikkol, Rees, Jon, Woolfitt, Adrian, Schieltz, David M., Tondella, Maria L., Ades, Edwin, Sampson, Jacquelyn, Carlone, George, Barr, John R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5687064/
https://www.ncbi.nlm.nih.gov/pubmed/22537821
http://dx.doi.org/10.1016/j.mimet.2012.04.007
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author Williamson, Yulanda M.
Moura, Hercules
Simmons, Kaneatra
Whitmon, Jennifer
Melnick, Nikkol
Rees, Jon
Woolfitt, Adrian
Schieltz, David M.
Tondella, Maria L.
Ades, Edwin
Sampson, Jacquelyn
Carlone, George
Barr, John R.
author_facet Williamson, Yulanda M.
Moura, Hercules
Simmons, Kaneatra
Whitmon, Jennifer
Melnick, Nikkol
Rees, Jon
Woolfitt, Adrian
Schieltz, David M.
Tondella, Maria L.
Ades, Edwin
Sampson, Jacquelyn
Carlone, George
Barr, John R.
author_sort Williamson, Yulanda M.
collection PubMed
description Bordetella pertussis (Bp) is the etiologic agent of pertussis or whooping cough, a highly contagious respiratory disease occurring primarily in infants and young children. Although vaccine preventable, pertussis cases have increased over the years leading researchers to re-evaluate vaccine control strategies. Since bacterial outer membrane proteins, comprising the surfaceome, often play roles in pathogenesis and antibody-mediated immunity, three recent Bp circulating isolates were examined using proteomics to identify any potential changes in surface protein expression. Fractions enriched for outer membrane proteins were digested with trypsin and the peptides analyzed by nano liquid chromatography-electrospray ionization-mass spectrometry (nLC-ESI-MS), followed by database analysis to elucidate the surfaceomes of our three Bp isolates. Furthermore, a less labor intensive non-gel based antibody affinity capture technology in conjunction with MS was employed to assess each Bp strains' immunogenic outer membrane proteins. This novel technique is generally applicable allowing for the identification of immunogenic surface expressed proteins on pertussis and other pathogenic bacteria.
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spelling pubmed-56870642017-11-15 A gel-free proteomic-based method for the characterization of Bordetella pertussis clinical isolates Williamson, Yulanda M. Moura, Hercules Simmons, Kaneatra Whitmon, Jennifer Melnick, Nikkol Rees, Jon Woolfitt, Adrian Schieltz, David M. Tondella, Maria L. Ades, Edwin Sampson, Jacquelyn Carlone, George Barr, John R. J Microbiol Methods Article Bordetella pertussis (Bp) is the etiologic agent of pertussis or whooping cough, a highly contagious respiratory disease occurring primarily in infants and young children. Although vaccine preventable, pertussis cases have increased over the years leading researchers to re-evaluate vaccine control strategies. Since bacterial outer membrane proteins, comprising the surfaceome, often play roles in pathogenesis and antibody-mediated immunity, three recent Bp circulating isolates were examined using proteomics to identify any potential changes in surface protein expression. Fractions enriched for outer membrane proteins were digested with trypsin and the peptides analyzed by nano liquid chromatography-electrospray ionization-mass spectrometry (nLC-ESI-MS), followed by database analysis to elucidate the surfaceomes of our three Bp isolates. Furthermore, a less labor intensive non-gel based antibody affinity capture technology in conjunction with MS was employed to assess each Bp strains' immunogenic outer membrane proteins. This novel technique is generally applicable allowing for the identification of immunogenic surface expressed proteins on pertussis and other pathogenic bacteria. 2012-04-18 2012-08 /pmc/articles/PMC5687064/ /pubmed/22537821 http://dx.doi.org/10.1016/j.mimet.2012.04.007 Text en Open access under CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/) .
spellingShingle Article
Williamson, Yulanda M.
Moura, Hercules
Simmons, Kaneatra
Whitmon, Jennifer
Melnick, Nikkol
Rees, Jon
Woolfitt, Adrian
Schieltz, David M.
Tondella, Maria L.
Ades, Edwin
Sampson, Jacquelyn
Carlone, George
Barr, John R.
A gel-free proteomic-based method for the characterization of Bordetella pertussis clinical isolates
title A gel-free proteomic-based method for the characterization of Bordetella pertussis clinical isolates
title_full A gel-free proteomic-based method for the characterization of Bordetella pertussis clinical isolates
title_fullStr A gel-free proteomic-based method for the characterization of Bordetella pertussis clinical isolates
title_full_unstemmed A gel-free proteomic-based method for the characterization of Bordetella pertussis clinical isolates
title_short A gel-free proteomic-based method for the characterization of Bordetella pertussis clinical isolates
title_sort gel-free proteomic-based method for the characterization of bordetella pertussis clinical isolates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5687064/
https://www.ncbi.nlm.nih.gov/pubmed/22537821
http://dx.doi.org/10.1016/j.mimet.2012.04.007
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