Cargando…

Genomic analysis of the meningococcal ST-4821 complex–Western clade, potential sexual transmission and predicted antibiotic susceptibility and vaccine coverage

INTRODUCTION: The ST-4821 complex (cc4821) is a leading cause of serogroup C and serogroup B invasive meningococcal disease in China where diverse strains in two phylogenetic groups (groups 1 and 2) have acquired fluoroquinolone resistance. cc4821 was recently prevalent among carriage isolates in me...

Descripción completa

Detalles Bibliográficos
Autores principales: Lucidarme, Jay, Zhu, Bingqing, Xu, Li, Bai, Xilian, Gao, Yuan, González-López, Juan José, Mulhall, Robert, Scott, Kevin J., Smith, Andrew, Stefanelli, Paola, Stenmark, Bianca, Torpiano, Paul, Tzanakaki, Georgina, Borrow, Ray, Shao, Zhujun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7728179/
https://www.ncbi.nlm.nih.gov/pubmed/33301524
http://dx.doi.org/10.1371/journal.pone.0243426
_version_ 1783621217620590592
author Lucidarme, Jay
Zhu, Bingqing
Xu, Li
Bai, Xilian
Gao, Yuan
González-López, Juan José
Mulhall, Robert
Scott, Kevin J.
Smith, Andrew
Stefanelli, Paola
Stenmark, Bianca
Torpiano, Paul
Tzanakaki, Georgina
Borrow, Ray
Shao, Zhujun
author_facet Lucidarme, Jay
Zhu, Bingqing
Xu, Li
Bai, Xilian
Gao, Yuan
González-López, Juan José
Mulhall, Robert
Scott, Kevin J.
Smith, Andrew
Stefanelli, Paola
Stenmark, Bianca
Torpiano, Paul
Tzanakaki, Georgina
Borrow, Ray
Shao, Zhujun
author_sort Lucidarme, Jay
collection PubMed
description INTRODUCTION: The ST-4821 complex (cc4821) is a leading cause of serogroup C and serogroup B invasive meningococcal disease in China where diverse strains in two phylogenetic groups (groups 1 and 2) have acquired fluoroquinolone resistance. cc4821 was recently prevalent among carriage isolates in men who have sex with men in New York City (USA). Genome-level population studies have thus far been limited to Chinese isolates. The aim of the present study was to build upon these with an extended panel of international cc4821 isolates. METHODS: Genomes of isolates from Asia (1972 to 2017), Europe (2011 to 2018), North America (2007), and South America (2014) were sequenced or obtained from the PubMLST Neisseria database. Core genome comparisons were performed in PubMLST. RESULTS: Four lineages were identified. Western isolates formed a distinct, mainly serogroup B sublineage with alleles associated with fluoroquinolone susceptibility (MIC <0.03 mg/L) and reduced penicillin susceptibility (MIC 0.094 to 1 mg/L). A third of these were from anogenital sites in men who have sex with men and had unique denitrification gene alleles. Generally 4CMenB vaccine strain coverage was reliant on strain-specific NHBA peptides. DISCUSSION: The previously identified cc4821 group 2 was resolved into three separate lineages. Clustering of western isolates was surprising given the overall diversity of cc4821. Possible association of this cluster with the anogenital niche is worthy of monitoring given concerns surrounding antibiotic resistance and potential subcapsular vaccine escape.
format Online
Article
Text
id pubmed-7728179
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-77281792020-12-16 Genomic analysis of the meningococcal ST-4821 complex–Western clade, potential sexual transmission and predicted antibiotic susceptibility and vaccine coverage Lucidarme, Jay Zhu, Bingqing Xu, Li Bai, Xilian Gao, Yuan González-López, Juan José Mulhall, Robert Scott, Kevin J. Smith, Andrew Stefanelli, Paola Stenmark, Bianca Torpiano, Paul Tzanakaki, Georgina Borrow, Ray Shao, Zhujun PLoS One Research Article INTRODUCTION: The ST-4821 complex (cc4821) is a leading cause of serogroup C and serogroup B invasive meningococcal disease in China where diverse strains in two phylogenetic groups (groups 1 and 2) have acquired fluoroquinolone resistance. cc4821 was recently prevalent among carriage isolates in men who have sex with men in New York City (USA). Genome-level population studies have thus far been limited to Chinese isolates. The aim of the present study was to build upon these with an extended panel of international cc4821 isolates. METHODS: Genomes of isolates from Asia (1972 to 2017), Europe (2011 to 2018), North America (2007), and South America (2014) were sequenced or obtained from the PubMLST Neisseria database. Core genome comparisons were performed in PubMLST. RESULTS: Four lineages were identified. Western isolates formed a distinct, mainly serogroup B sublineage with alleles associated with fluoroquinolone susceptibility (MIC <0.03 mg/L) and reduced penicillin susceptibility (MIC 0.094 to 1 mg/L). A third of these were from anogenital sites in men who have sex with men and had unique denitrification gene alleles. Generally 4CMenB vaccine strain coverage was reliant on strain-specific NHBA peptides. DISCUSSION: The previously identified cc4821 group 2 was resolved into three separate lineages. Clustering of western isolates was surprising given the overall diversity of cc4821. Possible association of this cluster with the anogenital niche is worthy of monitoring given concerns surrounding antibiotic resistance and potential subcapsular vaccine escape. Public Library of Science 2020-12-10 /pmc/articles/PMC7728179/ /pubmed/33301524 http://dx.doi.org/10.1371/journal.pone.0243426 Text en © 2020 Lucidarme 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Lucidarme, Jay
Zhu, Bingqing
Xu, Li
Bai, Xilian
Gao, Yuan
González-López, Juan José
Mulhall, Robert
Scott, Kevin J.
Smith, Andrew
Stefanelli, Paola
Stenmark, Bianca
Torpiano, Paul
Tzanakaki, Georgina
Borrow, Ray
Shao, Zhujun
Genomic analysis of the meningococcal ST-4821 complex–Western clade, potential sexual transmission and predicted antibiotic susceptibility and vaccine coverage
title Genomic analysis of the meningococcal ST-4821 complex–Western clade, potential sexual transmission and predicted antibiotic susceptibility and vaccine coverage
title_full Genomic analysis of the meningococcal ST-4821 complex–Western clade, potential sexual transmission and predicted antibiotic susceptibility and vaccine coverage
title_fullStr Genomic analysis of the meningococcal ST-4821 complex–Western clade, potential sexual transmission and predicted antibiotic susceptibility and vaccine coverage
title_full_unstemmed Genomic analysis of the meningococcal ST-4821 complex–Western clade, potential sexual transmission and predicted antibiotic susceptibility and vaccine coverage
title_short Genomic analysis of the meningococcal ST-4821 complex–Western clade, potential sexual transmission and predicted antibiotic susceptibility and vaccine coverage
title_sort genomic analysis of the meningococcal st-4821 complex–western clade, potential sexual transmission and predicted antibiotic susceptibility and vaccine coverage
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7728179/
https://www.ncbi.nlm.nih.gov/pubmed/33301524
http://dx.doi.org/10.1371/journal.pone.0243426
work_keys_str_mv AT lucidarmejay genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT zhubingqing genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT xuli genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT baixilian genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT gaoyuan genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT gonzalezlopezjuanjose genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT mulhallrobert genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT scottkevinj genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT smithandrew genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT stefanellipaola genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT stenmarkbianca genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT torpianopaul genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT tzanakakigeorgina genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT borrowray genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage
AT shaozhujun genomicanalysisofthemeningococcalst4821complexwesterncladepotentialsexualtransmissionandpredictedantibioticsusceptibilityandvaccinecoverage