Characterization of group A streptococci (Streptococcus pyogenes): correlation of M-protein and emm-gene type with

Dwight R Johnson1, Edward L Kaplan1, Amy VanGheem1

  • 1Department of Pediatrics and the World Health Organization Collaborating Center for Reference and Research on Streptococci, University of Minnesota, Minneapolis, MN 55455, USA.

Insights

This study updates the characterization of group A streptococci (GAS) strains. It correlates T-protein serotype and SOF production with M/emm types, crucial for understanding GAS epidemiology.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Epidemiology

Background:

  • Traditional group A streptococci (GAS) strain characterization relies on M protein serology.
  • T-protein serotyping and streptococcal serum opacity factor (SOF) determination offer supplementary data.
  • emm-sequence typing, developed from DNA sequencing, has largely replaced M typing for GAS identification.

Purpose of the Study:

  • To provide a comprehensive summary of T-protein serotype and SOF production correlations with M/emm types.
  • To update information for previously described types and include newly identified GAS types.
  • To address the lack of widely available information on T typing and SOF production for newer M/emm types.

Main Methods:

  • Data extraction from combined records of streptococcal reference laboratories at the University of Minnesota and CDC.
  • Analysis of over 40,000 GAS strains from diverse global locations and infection types.
  • Extraction of information on T-protein serotype and SOF production for correlation with M/emm types.

Main Results:

  • Updated comprehensive summary of T-protein serotype and SOF production correlations with M/emm types.
  • Inclusion of data for newly described M/emm types, alongside previously identified types.
  • Analysis of a large dataset encompassing uncomplicated, invasive, and sequelae-associated GAS infections.

Conclusions:

  • emm-sequence typing has expanded the known M/emm types of GAS by over 50%.
  • Updated information on T-protein serotype and SOF production is essential for comprehensive GAS strain characterization.
  • This report provides valuable, updated data for researchers and reference laboratories studying GAS epidemiology and diagnostics.

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