Cargando…

Pneumococcal Capsule Synthesis Locus cps as Evolutionary Hotspot with Potential to Generate Novel Serotypes by Recombination

Diversity of the polysaccharide capsule in Streptococcus pneumoniae—main surface antigen and the target of the currently used pneumococcal vaccines—constitutes a major obstacle in eliminating pneumococcal disease. Such diversity is genetically encoded by almost 100 variants of the capsule biosynthes...

Descripción completa

Detalles Bibliográficos
Autores principales: Mostowy, Rafał J., Croucher, Nicholas J., De Maio, Nicola, Chewapreecha, Claire, Salter, Susannah J., Turner, Paul, Aanensen, David M., Bentley, Stephen D., Didelot, Xavier, Fraser, Christophe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5850285/
https://www.ncbi.nlm.nih.gov/pubmed/28595308
http://dx.doi.org/10.1093/molbev/msx173
_version_ 1783306207933497344
author Mostowy, Rafał J.
Croucher, Nicholas J.
De Maio, Nicola
Chewapreecha, Claire
Salter, Susannah J.
Turner, Paul
Aanensen, David M.
Bentley, Stephen D.
Didelot, Xavier
Fraser, Christophe
author_facet Mostowy, Rafał J.
Croucher, Nicholas J.
De Maio, Nicola
Chewapreecha, Claire
Salter, Susannah J.
Turner, Paul
Aanensen, David M.
Bentley, Stephen D.
Didelot, Xavier
Fraser, Christophe
author_sort Mostowy, Rafał J.
collection PubMed
description Diversity of the polysaccharide capsule in Streptococcus pneumoniae—main surface antigen and the target of the currently used pneumococcal vaccines—constitutes a major obstacle in eliminating pneumococcal disease. Such diversity is genetically encoded by almost 100 variants of the capsule biosynthesis locus, cps. However, the evolutionary dynamics of the capsule remains not fully understood. Here, using genetic data from 4,519 bacterial isolates, we found cps to be an evolutionary hotspot with elevated substitution and recombination rates. These rates were a consequence of relaxed purifying selection and positive, diversifying selection acting at this locus, supporting the hypothesis that the capsule has an increased potential to generate novel diversity compared with the rest of the genome. Diversifying selection was particularly evident in the region of wzd/wze genes, which are known to regulate capsule expression and hence the bacterium’s ability to cause disease. Using a novel, capsule-centered approach, we analyzed the evolutionary history of 12 major serogroups. Such analysis revealed their complex diversification scenarios, which were principally driven by recombination with other serogroups and other streptococci. Patterns of recombinational exchanges between serogroups could not be explained by serotype frequency alone, thus pointing to nonrandom associations between co-colonizing serotypes. Finally, we discovered a previously unobserved mosaic serotype 39X, which was confirmed to carry a viable and structurally novel capsule. Adding to previous discoveries of other mosaic capsules in densely sampled collections, these results emphasize the strong adaptive potential of the bacterium by its ability to generate novel antigenic diversity by recombination.
format Online
Article
Text
id pubmed-5850285
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-58502852018-03-23 Pneumococcal Capsule Synthesis Locus cps as Evolutionary Hotspot with Potential to Generate Novel Serotypes by Recombination Mostowy, Rafał J. Croucher, Nicholas J. De Maio, Nicola Chewapreecha, Claire Salter, Susannah J. Turner, Paul Aanensen, David M. Bentley, Stephen D. Didelot, Xavier Fraser, Christophe Mol Biol Evol Discoveries Diversity of the polysaccharide capsule in Streptococcus pneumoniae—main surface antigen and the target of the currently used pneumococcal vaccines—constitutes a major obstacle in eliminating pneumococcal disease. Such diversity is genetically encoded by almost 100 variants of the capsule biosynthesis locus, cps. However, the evolutionary dynamics of the capsule remains not fully understood. Here, using genetic data from 4,519 bacterial isolates, we found cps to be an evolutionary hotspot with elevated substitution and recombination rates. These rates were a consequence of relaxed purifying selection and positive, diversifying selection acting at this locus, supporting the hypothesis that the capsule has an increased potential to generate novel diversity compared with the rest of the genome. Diversifying selection was particularly evident in the region of wzd/wze genes, which are known to regulate capsule expression and hence the bacterium’s ability to cause disease. Using a novel, capsule-centered approach, we analyzed the evolutionary history of 12 major serogroups. Such analysis revealed their complex diversification scenarios, which were principally driven by recombination with other serogroups and other streptococci. Patterns of recombinational exchanges between serogroups could not be explained by serotype frequency alone, thus pointing to nonrandom associations between co-colonizing serotypes. Finally, we discovered a previously unobserved mosaic serotype 39X, which was confirmed to carry a viable and structurally novel capsule. Adding to previous discoveries of other mosaic capsules in densely sampled collections, these results emphasize the strong adaptive potential of the bacterium by its ability to generate novel antigenic diversity by recombination. Oxford University Press 2017-10 2017-06-08 /pmc/articles/PMC5850285/ /pubmed/28595308 http://dx.doi.org/10.1093/molbev/msx173 Text en © The Author 2017. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Discoveries
Mostowy, Rafał J.
Croucher, Nicholas J.
De Maio, Nicola
Chewapreecha, Claire
Salter, Susannah J.
Turner, Paul
Aanensen, David M.
Bentley, Stephen D.
Didelot, Xavier
Fraser, Christophe
Pneumococcal Capsule Synthesis Locus cps as Evolutionary Hotspot with Potential to Generate Novel Serotypes by Recombination
title Pneumococcal Capsule Synthesis Locus cps as Evolutionary Hotspot with Potential to Generate Novel Serotypes by Recombination
title_full Pneumococcal Capsule Synthesis Locus cps as Evolutionary Hotspot with Potential to Generate Novel Serotypes by Recombination
title_fullStr Pneumococcal Capsule Synthesis Locus cps as Evolutionary Hotspot with Potential to Generate Novel Serotypes by Recombination
title_full_unstemmed Pneumococcal Capsule Synthesis Locus cps as Evolutionary Hotspot with Potential to Generate Novel Serotypes by Recombination
title_short Pneumococcal Capsule Synthesis Locus cps as Evolutionary Hotspot with Potential to Generate Novel Serotypes by Recombination
title_sort pneumococcal capsule synthesis locus cps as evolutionary hotspot with potential to generate novel serotypes by recombination
topic Discoveries
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5850285/
https://www.ncbi.nlm.nih.gov/pubmed/28595308
http://dx.doi.org/10.1093/molbev/msx173
work_keys_str_mv AT mostowyrafałj pneumococcalcapsulesynthesislocuscpsasevolutionaryhotspotwithpotentialtogeneratenovelserotypesbyrecombination
AT crouchernicholasj pneumococcalcapsulesynthesislocuscpsasevolutionaryhotspotwithpotentialtogeneratenovelserotypesbyrecombination
AT demaionicola pneumococcalcapsulesynthesislocuscpsasevolutionaryhotspotwithpotentialtogeneratenovelserotypesbyrecombination
AT chewapreechaclaire pneumococcalcapsulesynthesislocuscpsasevolutionaryhotspotwithpotentialtogeneratenovelserotypesbyrecombination
AT saltersusannahj pneumococcalcapsulesynthesislocuscpsasevolutionaryhotspotwithpotentialtogeneratenovelserotypesbyrecombination
AT turnerpaul pneumococcalcapsulesynthesislocuscpsasevolutionaryhotspotwithpotentialtogeneratenovelserotypesbyrecombination
AT aanensendavidm pneumococcalcapsulesynthesislocuscpsasevolutionaryhotspotwithpotentialtogeneratenovelserotypesbyrecombination
AT bentleystephend pneumococcalcapsulesynthesislocuscpsasevolutionaryhotspotwithpotentialtogeneratenovelserotypesbyrecombination
AT didelotxavier pneumococcalcapsulesynthesislocuscpsasevolutionaryhotspotwithpotentialtogeneratenovelserotypesbyrecombination
AT fraserchristophe pneumococcalcapsulesynthesislocuscpsasevolutionaryhotspotwithpotentialtogeneratenovelserotypesbyrecombination