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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
Abstract:
Four members of the carcinoembryonic antigen family, CEACAM1, CEACAM8, CEACAM6 and CEACAM3, recognized by CD66a, CD66b, CD66c and CD66d monoclonal antibodies (mAb), respectively, are expressed on human neutrophils. CD66a, CD66b, CD66c and CD66d mAb binding to neutrophils triggers an activation signal that regulates the adhesive activity of CD11/CD18, resulting in an increase in neutrophil adhesion to human umbilical vein endothelial cells. Molecular modeling of CEACAM1 using IgG and CD4 as models has been performed, and three peptides from the N-terminal domain were found to increase neutrophil adhesion to human umbilical vein endothelial cell monolayers. The peptides were 14 amino acids in length and were predicted to be present at loops and turns between beta-sheets. To better understand the amino acid sequences critical for this biological activity, in the present study we examined the other neutrophil CEACAMs and the highly homologous CEACAM, CEA. Molecular modeling of the N-terminal domains of human CEACAM8, -6, -3 and CEA was performed. Twenty peptides, each 14 amino acids in length, that were homologous to the previously reported peptides from the N-domains of CEACAM1, were synthesized and tested for their ability to alter neutrophil adhesion. Only one new peptide, from the N-domain of CEA, was found to increase neutrophil adhesion, and this peptide differed from the corresponding CEACAM1 peptide by only a single conservative amino acid substitution. Importantly, minor amino acid differences between active and inactive homologous peptides suggest regions of these peptides that are critical for biological activity. The data suggest that the regions SMPF of peptide CD66a-1, QLFG of peptide CD66a-2 and NRQIV of peptide CD66a-3 are critical for the activities of these peptides, and for the native CEACAMs.
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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