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Single Amino Acid Polymorphisms of Pertussis Toxin Subunit S2 (PtxB) Affect Protein Function

Whooping cough due to Bordetella pertussis is increasing in incidence, in part due to accumulation of mutations which increase bacterial fitness in highly vaccinated populations. Polymorphisms in the pertussis toxin, ptxA and ptxB genes, and the pertactin, prn genes of clinical isolates of Bordetell...

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Autores principales: Millen, Scott H., Watanabe, Mineo, Komatsu, Eiji, Yamaguchi, Fuminori, Nagasawa, Yuki, Suzuki, Eri, Monaco, Haleigh, Weiss, Alison A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4573519/
https://www.ncbi.nlm.nih.gov/pubmed/26375454
http://dx.doi.org/10.1371/journal.pone.0137379
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author Millen, Scott H.
Watanabe, Mineo
Komatsu, Eiji
Yamaguchi, Fuminori
Nagasawa, Yuki
Suzuki, Eri
Monaco, Haleigh
Weiss, Alison A.
author_facet Millen, Scott H.
Watanabe, Mineo
Komatsu, Eiji
Yamaguchi, Fuminori
Nagasawa, Yuki
Suzuki, Eri
Monaco, Haleigh
Weiss, Alison A.
author_sort Millen, Scott H.
collection PubMed
description Whooping cough due to Bordetella pertussis is increasing in incidence, in part due to accumulation of mutations which increase bacterial fitness in highly vaccinated populations. Polymorphisms in the pertussis toxin, ptxA and ptxB genes, and the pertactin, prn genes of clinical isolates of Bordetella pertussis collected in Cincinnati from 1989 through 2005 were examined. While the ptxA and prn genotypes were variable, all 48 strains had the ptxB2 genotype; ptxB1 encodes glycine at amino acid 18 of the S2 subunit of pertussis toxin, while ptxB2 encodes serine. We investigated antigenic and functional differences of PtxB1 and PtxB2. The S2 protein was not very immunogenic. Only a few vaccinated or individuals infected with B. pertussis developed antibody responses to the S2 subunit, and these sera recognized both polymorphic forms equally well. Amino acid 18 of S2 is in a glycan binding domain, and the PtxB forms displayed differences in receptor recognition and toxicity. PtxB1 bound better to the glycoprotein, fetuin, and Jurkat T cells in vitro, but the two forms were equally effective at promoting CHO cell clustering. To investigate in vivo activity of Ptx, one μg of Ptx was administered to DDY mice and blood was collected on 4 days after injection. PtxB2 was more effective at promoting lymphocytosis in mice.
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spelling pubmed-45735192015-09-18 Single Amino Acid Polymorphisms of Pertussis Toxin Subunit S2 (PtxB) Affect Protein Function Millen, Scott H. Watanabe, Mineo Komatsu, Eiji Yamaguchi, Fuminori Nagasawa, Yuki Suzuki, Eri Monaco, Haleigh Weiss, Alison A. PLoS One Research Article Whooping cough due to Bordetella pertussis is increasing in incidence, in part due to accumulation of mutations which increase bacterial fitness in highly vaccinated populations. Polymorphisms in the pertussis toxin, ptxA and ptxB genes, and the pertactin, prn genes of clinical isolates of Bordetella pertussis collected in Cincinnati from 1989 through 2005 were examined. While the ptxA and prn genotypes were variable, all 48 strains had the ptxB2 genotype; ptxB1 encodes glycine at amino acid 18 of the S2 subunit of pertussis toxin, while ptxB2 encodes serine. We investigated antigenic and functional differences of PtxB1 and PtxB2. The S2 protein was not very immunogenic. Only a few vaccinated or individuals infected with B. pertussis developed antibody responses to the S2 subunit, and these sera recognized both polymorphic forms equally well. Amino acid 18 of S2 is in a glycan binding domain, and the PtxB forms displayed differences in receptor recognition and toxicity. PtxB1 bound better to the glycoprotein, fetuin, and Jurkat T cells in vitro, but the two forms were equally effective at promoting CHO cell clustering. To investigate in vivo activity of Ptx, one μg of Ptx was administered to DDY mice and blood was collected on 4 days after injection. PtxB2 was more effective at promoting lymphocytosis in mice. Public Library of Science 2015-09-16 /pmc/articles/PMC4573519/ /pubmed/26375454 http://dx.doi.org/10.1371/journal.pone.0137379 Text en © 2015 Millen 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
Millen, Scott H.
Watanabe, Mineo
Komatsu, Eiji
Yamaguchi, Fuminori
Nagasawa, Yuki
Suzuki, Eri
Monaco, Haleigh
Weiss, Alison A.
Single Amino Acid Polymorphisms of Pertussis Toxin Subunit S2 (PtxB) Affect Protein Function
title Single Amino Acid Polymorphisms of Pertussis Toxin Subunit S2 (PtxB) Affect Protein Function
title_full Single Amino Acid Polymorphisms of Pertussis Toxin Subunit S2 (PtxB) Affect Protein Function
title_fullStr Single Amino Acid Polymorphisms of Pertussis Toxin Subunit S2 (PtxB) Affect Protein Function
title_full_unstemmed Single Amino Acid Polymorphisms of Pertussis Toxin Subunit S2 (PtxB) Affect Protein Function
title_short Single Amino Acid Polymorphisms of Pertussis Toxin Subunit S2 (PtxB) Affect Protein Function
title_sort single amino acid polymorphisms of pertussis toxin subunit s2 (ptxb) affect protein function
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4573519/
https://www.ncbi.nlm.nih.gov/pubmed/26375454
http://dx.doi.org/10.1371/journal.pone.0137379
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