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Updated: May 25, 2026

Application of Long-term cultured Interferon-γ Enzyme-linked Immunospot Assay for Assessing Effector and Memory T Cell Responses in Cattle
Published on: July 11, 2015
Identification of allelic variants of the bovine immune regulatory molecule CEACAM1 implies a pathogen-driven
Robert Kammerer1, Tanja Popp, Bernhard B Singer
1Tumor Immunology Laboratory, Department of Urology, Klinikum Grosshadern, Ludwig-Maximilians-University, Marchioninistr. 23, Munich D-81377, Germany. robert.kammerer@med.uni-muenchen.de
Insights
Carcinoembryonic antigen-related cell adhesion molecule 1 (CEACAM1) in cattle exhibits unique evolutionary differences, including alternative splicing and distinct alleles, suggesting a role in pathogen interactions.
Area of Science:
- Immunology
- Evolutionary Biology
- Molecular Biology
Background:
- CEACAM1 is a key immune receptor regulating NK, T, and B cell functions.
- CEACAM1 and CEA family members show significant species-specific differences.
- Pathogens utilize CEACAM1 as a cellular receptor, driving coevolution.
Purpose of the Study:
- To investigate the evolution and function of CEACAM1 in cattle.
- To understand species-specific differences in CEACAM1 structure and function.
Main Methods:
- Cloning of bovine CEACAM1 cDNA.
- Analysis of alternative splicing and allelic variations.
- Expression analysis in peripheral blood lymphocytes (PBL).
Main Results:
- Bovine CEACAM1 differs from primate and rodent forms due to exon deletion and alternative splicing.
- Both long (ITIM-containing) and short isoforms exist, with PBLs expressing only long isoforms.
- Two distinct CEACAM1 alleles (a and b) were identified, with allele 'a' having an N-domain deletion potentially affecting pathogen binding.
Conclusions:
- Bovine CEACAM1 exhibits unique evolutionary adaptations.
- The presence of ITIM-containing isoforms in PBLs suggests an inhibitory immune function.
- Allelic variations indicate a potential role for CEACAM1 as a pathogen receptor in cattle.
Abstract:
Carcinoembryonic antigen-related cell adhesion molecule (CEACAM1), the primordial member of the carcinoembryonic antigen (CEA) family, functions as a MHC-independent natural killer (NK) cell inhibitory receptor, regulates T and B cell proliferation, and induces dendritic cell (DC) maturation. Despite these fundamental functions, CEACAM1 and most of the CEA family members differ significantly in primates and rodents. A number of diverse murine and human pathogens use CEACAM1 as a cellular receptor, indicating that the observed species-specific differences are the result of divergent molecular pathogen/host coevolution. To gain deeper insight into its evolution and function, we cloned CEACAM1 cDNA from cattle as a representative of a third mammalian order. Bovine CEACAM1 differs considerably from rodent and primate CEACAM1 due to deletion of the B domain exon which was most likely caused by insertion of LINE/SINE sequences and reveals alternative splicing within the transmembrane exon. However, the characteristic long and short isoforms exist which contain or lack the typical immunoreceptor tyrosine-based inhibitory motifs (ITIM) in their cytoplasmic tails, respectively. Bovine peripheral blood lymphocytes (PBL) express only ITIM-containing CEACAM1 isoforms, and upregulate their expression upon stimulation, suggesting an inhibitory function in these cells. As found in rodents, two clearly distinct CEACAM1 alleles exist in cattle. In the a allele, a unique deletion of three amino acids is found in the N domain, which is important for pathogen binding in mice and humans. This is consistent with the notion that CEACAM1 serves or has served as a pathogen receptor in cattle.
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