Analysis of leukocyte membrane protein interactions using protein microarrays

Michelle Letarte1, Despina Voulgaraki, Deborah Hatherley

  • 1Sir William Dunn School of Pathology, University of Oxford, Oxford, OX1 3RE, UK. mablab@sickkids.ca <mablab@sickkids.ca>

BMC Biochemistry
|March 3, 2005
PubMed

Insights

This study demonstrates sensitive and specific detection of immobilized CD200 receptor using protein microarrays. The technology enables mapping of antibody epitopes near the CD200 binding site and detection of weak leukocyte membrane protein interactions.

Area of Science:

  • Proteomics
  • Immunology
  • Biochemistry

Background:

  • Protein microarrays are emerging tools for parallel investigation of protein-protein interactions.
  • Immobilized proteins must maintain active conformation and orientation for sensitive detection.
  • The human leukocyte membrane protein CD200 (OX2) and its receptor (hCD200R) were used as a model system for weak interactions.

Purpose of the Study:

  • To establish protein array technology for characterizing weak interactions between leukocyte membrane proteins.
  • To analyze the reactivity of monoclonal antibodies (mAb) to immobilized CD200R.
  • To map antigenic epitopes and detect CD200-hCD200R binding.

Main Methods:

  • Immobilization of recombinant hCD200R extracellular region and mutant forms.
  • Screening with fluorescently labelled monoclonal antibodies (mAb).
  • Detection of CD200 binding using multimeric ligands on beads.

Main Results:

  • Sensitive and specific reactivity of mAb DX147, DX136, and OX108 with immobilized hCD200R.
  • Epitope mapping indicated proximity of DX136 and OX108 epitopes to the CD200 binding site.
  • Successful detection of low-affinity CD200-hCD200R binding using multivalent ligands on beads.

Conclusions:

  • Protein microarrays enable sensitive, specific, and reproducible detection of immobilized proteins.
  • Antigenic epitopes were mapped near the ligand binding site.
  • The technology is suitable for quantitative analysis of multiple protein-protein interactions, including weak leukocyte membrane protein interactions.
Abstract