Synthetic peptides from the N-domains of CEACAMs activate neutrophils

K M Skubitz1, K D Campbell, A P Skubitz

  • 1Department of Medicine, The University of Minnesota Medical School, Minneapolis, USA. skkubi001@tc.umn.edu

Insights

Specific amino acid sequences in carcinoembryonic antigen family proteins regulate neutrophil adhesion. Minor changes in these sequences, particularly within the N-terminal domain, are critical for this biological activity.

Area of Science:

  • Immunology
  • Molecular Biology
  • Cell Biology

Background:

  • Four carcinoembryonic antigen (CEA) family members (CEACAM1, CEACAM8, CEACAM6, CEACAM3) are expressed on human neutrophils and recognized by CD66a-d monoclonal antibodies (mAbs).
  • Binding of CD66a-d mAbs to neutrophils activates signaling pathways that enhance neutrophil adhesion to endothelial cells via CD11/CD18.
  • Previous studies identified three N-terminal peptides from CEACAM1 that increase neutrophil adhesion.

Purpose of the Study:

  • To investigate the critical amino acid sequences within neutrophil CEACAMs and the homologous CEA protein responsible for regulating neutrophil adhesion.
  • To synthesize and test homologous peptides from other CEACAMs and CEA to identify those that alter neutrophil adhesion.

Main Methods:

  • Molecular modeling of the N-terminal domains of human CEACAM8, CEACAM6, CEACAM3, and CEA.
  • Synthesis and testing of twenty 14-amino acid peptides homologous to previously identified active peptides from CEACAM1.
  • Assessing the ability of synthesized peptides to alter neutrophil adhesion to human umbilical vein endothelial cell monolayers.

Main Results:

  • Only one new peptide, derived from the N-domain of CEA, demonstrated an increase in neutrophil adhesion.
  • This active CEA peptide differed from the corresponding CEACAM1 peptide by a single conservative amino acid substitution.
  • Analysis of active and inactive homologous peptides identified specific regions (SMPF, QLFG, NRQIV) critical for biological activity.

Conclusions:

  • Minor amino acid variations within the N-terminal domains of CEACAMs and CEA significantly impact their ability to modulate neutrophil adhesion.
  • The identified critical amino acid regions (SMPF, QLFG, NRQIV) are essential for the biological activity of these peptides and the native CEACAM proteins.

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