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Crystal structure of an Fab fragment in complex with a meningococcal serosubtype antigen and a protein G domain
J P Derrick1, M C Maiden, I M Feavers
1Department of Biomolecular Sciences, UMIST, Manchester, M60 1QD, UK. Jeremy.Derrick@umist.ac.uk
Abstract:
Many pathogens present highly variable surface proteins to their host as a means of evading immune responses. The structure of a peptide antigen corresponding to the subtype P1.7 variant of the porin PorA from the human pathogen Neisseria meningitidis was determined by solution of the X-ray crystal structure of the ternary complex of the peptide (ANGGASGQVK) in complex with a Fab fragment and a domain from streptococcal protein G to 1.95 A resolution. The peptide adopted a beta-hairpin structure with a type I beta-turn between residues Gly4P and Gly7P, the conformation of the peptide being further stabilised by a pair of hydrogen bonds from the side-chain of Asn2P to main-chain atoms in Val9P. The antigen binding site within the Fab formed a distinct crevice lined by a high proportion of apolar amino acids. Recognition was supplemented by hydrogen bonds from heavy chain residues Thr50H, Asp95H, Leu97H and Tyr100H to main-chain and side-chain atoms in the peptide. Complementarity-determining region (CDR) 3 of the heavy chain was responsible for approximately 50 % of the buried surface area formed by peptide-Fab binding, with the remainder made up from CDRs 1 and 3 of the light chain and CDRs 1 and 2 of the heavy chain. Knowledge of the structures of variable surface antigens such as PorA is an essential prerequisite to a molecular understanding of antigenic variation and its implications for vaccine design.
Insights
Understanding Neisseria meningitidis PorA structure is key to combating immune evasion. This study reveals the peptide antigen
Area of Science:
- Structural biology
- Immunology
- Microbiology
Background:
- Pathogens like Neisseria meningitidis use variable surface proteins to evade host immune responses.
- PorA is a key surface protein in Neisseria meningitidis, contributing to immune evasion through antigenic variation.
Purpose of the Study:
- To determine the X-ray crystal structure of a peptide antigen from Neisseria meningitidis PorA subtype P1.7.
- To elucidate the molecular interactions between the peptide antigen and its binding antibody fragment.
Main Methods:
- X-ray crystallography was used to determine the structure of the peptide-Fab complex at 1.95 A resolution.
- Analysis of hydrogen bonding and buried surface area to understand antigen-antibody recognition.
Main Results:
- The peptide antigen adopted a stabilized beta-hairpin conformation.
- The antibody's antigen-binding site featured a crevice rich in apolar amino acids.
- Complementarity-determining regions (CDRs) of the antibody, particularly heavy chain CDR3, were crucial for binding.
Conclusions:
- Structural insights into PorA peptide-antigen interactions provide a basis for understanding antigenic variation.
- This knowledge is essential for designing effective vaccines against Neisseria meningitidis.