Combinatorial Synthetic Peptide Vaccine Strategy Protects against Hypervirulent CovR/S Mutant Streptococci

Manisha Pandey1, Rasmus Mortensen2, Ainslie Calcutt3

  • 1Institute for Glycomics, Griffith University, Gold Coast Campus, Southport, Queensland 4222, Australia; michael.good@griffith.edu.au m.pandey@griffith.edu.au.

Insights

A new two-component vaccine combining anti-S2 and anti-J8 peptides protects against hypervirulent group A streptococci (GAS) by neutralizing virulence factors and enhancing neutrophil response.

Area of Science:

  • Microbiology and Immunology
  • Vaccine Development
  • Pathogen Virulence Mechanisms

Background:

  • Cluster of virulence responder/sensor (CovR/S) mutant group A streptococci (GAS) are significant human pathogens.
  • These mutants upregulate virulence factors like SpyCEP, which degrades IL-8, impairing neutrophil-mediated killing and promoting deep tissue infection.
  • Previous vaccines combining M protein peptide (J8-DT) and SpyCEP fragment showed protection against CovR/S mutants.

Purpose of the Study:

  • To develop a safer and more effective two-component vaccine against hypervirulent GAS.
  • To identify a minimal epitope (S2) of SpyCEP for antibody induction.
  • To evaluate the protective efficacy of a vaccine combining anti-S2 and anti-J8 components.

Main Methods:

  • Identification of a minimal SpyCEP epitope (S2) targeted by protective antibodies.
  • Conjugation of S2 to diphtheria toxoid (DT) to create an immunogenic peptide.
  • Evaluation of a two-component vaccine (S2-DT and J8-DT) in a mouse model of GAS infection.

Main Results:

  • The S2 epitope elicits antibodies that neutralize SpyCEP and protect IL-8 from proteolysis.
  • The combination vaccine (anti-S2 and anti-J8) provided complete protection against skin infection and bacteremia caused by CovR/S mutant GAS.
  • Vaccine efficacy correlated with increased neutrophil infiltration at the infection site.

Conclusions:

  • A two-component peptide vaccine targeting SpyCEP (via S2) and M protein (via J8) is highly effective against hypervirulent GAS.
  • This vaccine strategy overcomes the poor immunogenicity of native SpyCEP and induces protective immunity.
  • The findings suggest a potential strategy to address the lack of natural immunity to hypervirulent GAS strains in humans.

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