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Published on: December 19, 2020
Structure of a protective epitope of group B Streptococcus type III capsular polysaccharide
Filippo Carboni1, Roberto Adamo1, Monica Fabbrini1
1GSK Vaccines, 53100 Siena, Italy.
Insights
Researchers mapped the structure of a protective epitope on group B Streptococcus type III polysaccharide. This finding is crucial for developing effective GBS vaccines and understanding antibody interactions.
Area of Science:
- Immunology
- Structural Biology
- Vaccine Development
Background:
- Group B Streptococcus (GBS) remains a significant cause of neonatal infections despite antibiotic prophylaxis.
- Capsular polysaccharide conjugate vaccines show promise but require detailed epitope understanding.
- Identifying antibody-binding epitopes is key for vaccine mechanism elucidation and antigen design.
Purpose of the Study:
- To determine the atomic-level structure of the epitope recognized by a protective monoclonal antibody against GBS type III polysaccharide.
- To elucidate the molecular basis of antibody-carbohydrate interactions for vaccine development.
Main Methods:
- Utilized saturation transfer difference (STD)-NMR and X-ray crystallography.
- Employed synthetic and depolymerization procedures to obtain relevant oligosaccharides.
- Analyzed atomic-level interactions between the antibody and the GBS polysaccharide epitope.
Main Results:
- The GBS type III polysaccharide epitope comprises six sugar residues.
- A sialic acid residue within the epitope directly interacts with the antibody.
- The crystal structure revealed that a conformational epitope is not essential for antigen recognition.
Conclusions:
- Structural insights into antibody recognition of GBS polysaccharide epitopes are established.
- Findings support the design of novel glycoconjugate vaccines targeting GBS.
- Understanding epitope structure aids in developing more effective strategies against GBS neonatal infections.
Abstract:
Despite substantial progress in the prevention of group B Streptococcus (GBS) disease with the introduction of intrapartum antibiotic prophylaxis, this pathogen remains a leading cause of neonatal infection. Capsular polysaccharide conjugate vaccines have been tested in phase I/II clinical studies, showing promise for further development. Mapping of epitopes recognized by protective antibodies is crucial for understanding the mechanism of action of vaccines and for enabling antigen design. In this study, we report the structure of the epitope recognized by a monoclonal antibody with opsonophagocytic activity and representative of the protective response against type III GBS polysaccharide. The structure and the atomic-level interactions were determined by saturation transfer difference (STD)-NMR and X-ray crystallography using oligosaccharides obtained by synthetic and depolymerization procedures. The GBS PSIII epitope is made by six sugars. Four of them derive from two adjacent repeating units of the PSIII backbone and two of them from the branched galactose-sialic acid disaccharide contained in this sequence. The sialic acid residue establishes direct binding interactions with the functional antibody. The crystal structure provides insight into the molecular basis of antibody-carbohydrate interactions and confirms that the conformational epitope is not required for antigen recognition. Understanding the structural basis of immune recognition of capsular polysaccharide epitopes can aid in the design of novel glycoconjugate vaccines.
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