Mapping a conserved conformational epitope from the M protein of group A streptococci

W A Relf1, J Cooper, E R Brandt

  • 1Queensland Institute of Medical Research, Royal Brisbane Hospital, Australia.

Peptide Research
|January 1, 1996
PubMed

Insights

Group A Streptococcus M protein's critical antibody epitope is conformational, requiring chimeric peptides to map its minimal binding sequence. This finding aids understanding of GAS immunity and rheumatic heart disease pathogenesis.

Area of Science:

  • Immunology
  • Microbiology
  • Structural Biology

Background:

  • The M protein of Group A Streptococcus (GAS) is crucial for immune evasion and contains conserved epitopes.
  • Antibodies to the M protein carboxyl terminus can provide protection against GAS infection.
  • This region also elicits T-cell responses that cross-react with heart antigens, potentially contributing to rheumatic heart disease.

Purpose of the Study:

  • To precisely define critical epitopes within the M protein carboxyl terminus.
  • To identify the minimal antibody-binding sequence of a key epitope (peptide 145).
  • To investigate the structural basis of antibody recognition and its implications for immunity and autoimmunity.

Main Methods:

  • Synthesis of small overlapping peptides and mutated peptides spanning peptide 145.
  • Development of chimeric peptides displaying M protein fragments within a helical scaffold (GCN4 leucine zipper).
  • Circular dichroism spectroscopy to assess helical structure.
  • Antibody capture assays using mouse and human sera.
  • Inhibition assays for opsonization.
  • T-cell proliferation assays.

Main Results:

  • Small synthetic peptides failed to capture antibodies, indicating the epitope is conformational.
  • Chimeric peptides, but not short linear peptides, exhibited alpha-helical potential similar to native peptide 145.
  • Chimeric peptides successfully mapped the minimal antibody-binding sequence to RRDLDASREAKK (J(I)2).
  • The identified minimal epitope (J2) inhibited GAS opsonization.
  • T-cell responses to the mapped epitope were significantly lower than to the full peptide 145.

Conclusions:

  • The immunodominant epitope of M protein peptide 145 is conformational and relies on helical structure for antibody recognition.
  • Chimeric peptides are effective tools for mapping conformational epitopes within coiled-coil proteins.
  • The minimal binding epitope differs from regions that elicit strong T-cell responses, suggesting distinct epitope structures for antibody and T-cell recognition.
  • Findings contribute to understanding GAS immunity and the autoimmune mechanisms in rheumatic heart disease.