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Treponema pallidum genome sequencing from six continents reveals variability in vaccine candidate genes and dominance of Nichols clade strains in Madagascar

  • Nicole A.P. Lieberman
  • , Michelle J. Lin
  • , Hong Xie
  • , Lasata Shrestha
  • , Tien Nguyen
  • , Meei Li Huang
  • , Austin M. Haynes
  • , Emily Romeis
  • , Qian Qiu Wang
  • , Rui Li Zhang
  • , Cai Xia Kou
  • , Giulia Ciccarese
  • , Ivano Dal Conte
  • , Marco Cusini
  • , Francesco Drago
  • , Shu Ichi Nakayama
  • , Kenichi Lee
  • , Makoto Ohnishi
  • , Kelika A. Konda
  • , Silver K. Vargas
  • Maria Eguiluz, Carlos F. Caceres, Jeffrey D. Klausner, Oriol Mitjà, Anne Rompalo, Fiona Mulcahy, Edward W. Hook, Sheila A. Lukehart, Amanda M. Casto, Pavitra Roychoudhury, Frank Dimaio, Lorenzo Giacani, Alexander L. Greninger
  • University of Washington
  • Univ. of Washington Sch. of Med.
  • Chinese Academy of Medical Sciences & Peking Union Medical College
  • National Center for STD Control
  • The Second Affiliated Hospital of Nanjing Medical University
  • San Martino University Hospital
  • University of Torino
  • Fondazione IRCCS Ca’ Granda Ospedale Maggiore Policlinico
  • National Institute of Infectious Diseases
  • Keck School of Medicine of USC
  • Universidad Peruana Cayetano Heredia
  • Hospital Germans Trias i Pujol
  • Newcrest Mining
  • Johns Hopkins Medical Institutions
  • St. James’s Hospital
  • University of Alabama at Birmingham
  • Fred Hutchinson Cancer Research Center

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

66 Citas (Scopus)

Resumen

In spite of its immutable susceptibility to penicillin, Treponema pallidum (T. pallidum) subsp. pallidum continues to cause millions of cases of syphilis each year worldwide, resulting in significant morbidity and mortality and underscoring the urgency of developing an effective vaccine to curtail the spread of the infection. Several technical challenges, including absence of an in vitro culture system until very recently, have hampered efforts to catalog the diversity of strains collected worldwide. Here, we provide near-complete genomes from 196 T. pallidum strains–including 191 T. pallidum subsp. pallidum–sequenced directly from patient samples collected from 8 countries and 6 continents. Maximum likelihood phylogeny revealed that samples from most sites were predominantly SS14 clade. However, 99% (84/ 85) of the samples from Madagascar formed two of the five distinct Nichols subclades. Although recombination was uncommon in the evolution of modern circulating strains, we found multiple putative recombination events between T. pallidum subsp. pallidum and subsp. endemicum, shaping the genomes of several subclades. Temporal analysis dated the most recent common ancestor of Nichols and SS14 clades to 1717 (95% HPD: 1543– 1869), in agreement with other recent studies. Rates of SNP accumulation varied significantly among subclades, particularly among different Nichols subclades, and was associated in the Nichols A subclade with a C394F substitution in TP0380, a ERCC3-like DNA repair helicase. Our data highlight the role played by variation in genes encoding putative surface-exposed outer membrane proteins in defining separate lineages, and provide a criti-cal resource for the design of broadly protective syphilis vaccines targeting surface antigens.

Idioma originalInglés
Número de artículoe0010063
PublicaciónPLoS Neglected Tropical Diseases
Volumen15
N.º12
DOI
EstadoPublicada - dic. 2021

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Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

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    ODS 3: Salud y bienestar

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