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Capsular Serotyping of Streptococcus pneumoniae Using the Quellung Reaction
Published on: February 24, 2014
Global emergence and population dynamics of divergent serotype 3 CC180 pneumococci
Taj Azarian1, Patrick K Mitchell1, Maria Georgieva1
1Center for Communicable Disease Dynamics, Department of Epidemiology, T.H. Chan School of Public Health, Harvard University, Boston, Massachusetts, United States of America.
Abstract:
Streptococcus pneumoniae serotype 3 remains a significant cause of morbidity and mortality worldwide, despite inclusion in the 13-valent pneumococcal conjugate vaccine (PCV13). Serotype 3 increased in carriage since the implementation of PCV13 in the USA, while invasive disease rates remain unchanged. We investigated the persistence of serotype 3 in carriage and disease, through genomic analyses of a global sample of 301 serotype 3 isolates of the Netherlands3-31 (PMEN31) clone CC180, combined with associated patient data and PCV utilization among countries of isolate collection. We assessed phenotypic variation between dominant clades in capsule charge (zeta potential), capsular polysaccharide shedding, and susceptibility to opsonophagocytic killing, which have previously been associated with carriage duration, invasiveness, and vaccine escape. We identified a recent shift in the CC180 population attributed to a lineage termed Clade II, which was estimated by Bayesian coalescent analysis to have first appeared in 1968 [95% HPD: 1939-1989] and increased in prevalence and effective population size thereafter. Clade II isolates are divergent from the pre-PCV13 serotype 3 population in non-capsular antigenic composition, competence, and antibiotic susceptibility, the last of which resulting from the acquisition of a Tn916-like conjugative transposon. Differences in recombination rates among clades correlated with variations in the ATP-binding subunit of Clp protease, as well as amino acid substitutions in the comCDE operon. Opsonophagocytic killing assays elucidated the low observed efficacy of PCV13 against serotype 3. Variation in PCV13 use among sampled countries was not independently correlated with the CC180 population shift; therefore, genotypic and phenotypic differences in protein antigens and, in particular, antibiotic resistance may have contributed to the increase of Clade II. Our analysis emphasizes the need for routine, representative sampling of isolates from disperse geographic regions, including historically under-sampled areas. We also highlight the value of genomics in resolving antigenic and epidemiological variations within a serotype, which may have implications for future vaccine development.
Insights
Genomic analysis revealed a new lineage (Clade II) of Streptococcus pneumoniae serotype 3, which has increased despite the pneumococcal conjugate vaccine (PCV13). This lineage shows antibiotic resistance and altered antigens, impacting vaccine efficacy.
Area of Science:
- Microbiology
- Genomics
- Epidemiology
Background:
- Streptococcus pneumoniae serotype 3 causes significant global morbidity and mortality.
- Despite the 13-valent pneumococcal conjugate vaccine (PCV13), serotype 3 has increased in carriage in the USA.
Purpose of the Study:
- To investigate the genomic and phenotypic characteristics of Streptococcus pneumoniae serotype 3 persistence and its relationship with PCV13.
- To understand the factors contributing to the rise of a specific serotype 3 lineage (Clade II) within the CC180 clone.
Main Methods:
- Genomic analysis of 301 global serotype 3 isolates from the CC180 clone.
- Assessment of phenotypic variations including capsule charge, polysaccharide shedding, and opsonophagocytic killing.
- Bayesian coalescent analysis to estimate lineage emergence and prevalence.
Main Results:
- A distinct lineage, Clade II, emerged around 1968 and has since increased in prevalence.
- Clade II isolates exhibit divergence in non-capsular antigens and antibiotic resistance due to transposon acquisition.
- Opsonophagocytic killing assays confirmed low PCV13 efficacy against serotype 3, with Clade II contributing to this.
Conclusions:
- Genotypic and phenotypic differences, particularly antibiotic resistance, likely drove the increase of Clade II, independent of PCV13 use.
- Genomic analysis is crucial for identifying within-serotype variations impacting vaccine effectiveness.
- Routine global isolate sampling is vital for monitoring pathogen evolution and informing future vaccine development.
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