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Published on: December 19, 2020
Structure-guided design of a broadly cross-reactive multivalent group a streptococcal vaccine
James B Dale1, Michelle P Aranha2, Thomas A Penfound3
1Department of Medicine, Division of Infectious Diseases, University of Tennessee Health Science Center, Memphis, TN 38163, United States; Department of Microbiology, Immunology, and Biochemistry, University of Tennessee Health Science Center, Memphis, TN 38163, United States.
Abstract:
The M protein of group A streptococci (Strep A) is a major virulence determinant and protective antigen. The N-terminal region of the M protein is variable in sequence, defines the M/emm type, and contains epitopes that elicit opsonic antibodies that protect animals from challenge infections. Although there are >200 M types of Strep A, there is now evidence that structurally related M proteins can be grouped into clusters and that immunity may be cluster-specific in addition to M type-specific. This observation has led to recent studies of structure-based design of multivalent M peptide vaccines to select peptides predicted to cross-react with heterologous M types to improve vaccine coverage. In the current study, we have applied a refined series of peptide structural algorithms to predict immunological cross-reactivity among 117 N-terminal M peptides representing the most prevalent M types of Strep A. Based on the results of the structural analyses, in combination with global M type prevalence data, we constructed a 32-valent vaccine containing 19 cross-reactive vaccine candidates predicted to cross-react with 37 heterologous M peptides to which were added 13 type-specific M peptides. The 4-protein recombinant vaccine was immunogenic in rabbits and elicited significant levels of antibodies against 31/32 (97%) vaccine peptides and 28/37 (76%) peptides predicted to cross-react. The vaccine antisera also promoted opsonophagocytic killing of vaccine and cross-reactive M types of Strep A. Based on a recent analysis of M type prevalence of Strep A, the potential global coverage of the 32-valent vaccine is ∼90%, ranging from 68% in Africa to 95% in North America. Our results indicate the utility of structure-based design that may be applied to future studies of broadly protective M peptide vaccines.
Insights
A new 32-valent vaccine for Group A Streptococcus (Strep A) was designed using structural algorithms. This vaccine shows promise for broad protection against Strep A infections, with potential global coverage of approximately 90%.
Area of Science:
- Microbiology
- Immunology
- Vaccine Development
Background:
- Group A Streptococcus (Strep A) M protein is a key virulence factor and target for protective immunity.
- Over 200 M types exist, but structural similarities suggest cluster-specific immunity and potential for cross-reactive vaccines.
- Structure-based vaccine design aims to improve coverage by selecting peptides predicted to cross-react with multiple M types.
Purpose of the Study:
- To apply refined peptide structural algorithms to predict immunological cross-reactivity among N-terminal M peptides of prevalent Strep A types.
- To construct and evaluate a multivalent M peptide vaccine based on structural predictions and global M type prevalence data.
Main Methods:
- Structural algorithms were used to predict cross-reactivity among 117 N-terminal M peptides from prevalent Strep A types.
- A 32-valent vaccine was constructed, comprising 19 cross-reactive and 13 type-specific M peptides.
- The vaccine's immunogenicity and efficacy were assessed in rabbits, measuring antibody responses and opsonophagocytic activity.
Main Results:
- The 32-valent vaccine was immunogenic in rabbits, eliciting antibodies against 97% of vaccine peptides and 76% of predicted cross-reactive peptides.
- Vaccine antisera promoted opsonophagocytic killing of both vaccine and cross-reactive Strep A types.
- The vaccine demonstrated potential global coverage of ~90% for Strep A.
Conclusions:
- Structure-based design is a viable strategy for developing broadly protective M peptide vaccines against Strep A.
- The developed 32-valent vaccine shows significant promise for widespread protection against Strep A infections.
- Further studies can leverage these findings for future broadly protective M peptide vaccine development.
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