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Updated: May 7, 2026

Isolation and Characterization of Dendritic Cells and Macrophages from the Mouse Intestine
Published on: May 21, 2012
Characterizing CEACAM5 interaction with CD8α and CD1d in intestinal homeostasis
1Immunology Institute, Mount Sinai School of Medicine, New York, New York, USA.
Insights
Normal intestinal epithelial cells use CEACAM5 to activate CD8+ T cells, which suppress immune responses. Glycosylation changes in CEACAM5 are key for this interaction, offering insights into immune regulation.
Area of Science:
- Immunology
- Cell Biology
- Gastroenterology
Background:
- Intestinal epithelial cells (IECs) function as antigen-presenting cells.
- IECs activate CD8+ suppressor T cells via cell surface glycoprotein gp180.
- gp180 is identified as CEACAM5.
Purpose of the Study:
- To investigate the role of CEACAM5 in IEC-mediated immune regulation.
- To define the specific immunoregulatory properties of CEACAM5.
- To elucidate the interaction between CEACAM5, CD1d, and CD8.
Main Methods:
- Monoclonal antibody (mAb) B9 and L12 characterization.
- Purification and sequence analysis of mAb B9 reactive material.
- Assessment of CEACAM5 binding to CD8α and activation of Lck.
- In vitro proliferation assays of CD4+ T cells with CEACAM5-activated CD8+ T cells.
Main Results:
- CEACAM5 exhibits gp180 properties, including CD8α binding and Lck activation.
- CEACAM5 uniquely interacts with CD1d via its B3 domain.
- N-domain glycosylation of CEACAM5 is critical for CD8α binding and Lck activation.
- CEACAM5-activated CD8+ T cells suppress CD4+ T cell proliferation in the presence of IL-15 or IL-7.
Conclusions:
- CEACAM5 plays a crucial role in activating CD8+ suppressor T cells by IECs.
- Glycosylation-dependent conformational changes in CEACAM5 mediate CD8α interaction.
- CEACAM5, CD1d, and CD8 interactions create a class I-like molecule for regulatory T cell activation.
Abstract:
Normal intestinal epithelial cells (IECs) could act as non-professional antigen-presenting cells, selectively activating CD8(+)-suppressor T cells. An epithelial cell surface glycoprotein, gp180, recognized by monoclonal antibodies B9 and L12 was determined to be critical in this process. Purification and sequence analysis of mAb B9 reactive material revealed amino-acid sequence homology with CEACAM5. We demonstrate that CEACAM5 has properties attributed to gp180, such as CD8α binding and activation of CD8-associated Lck. CEACAM5 is the only CEACAM member interacting with CD1d through the B3 domain. Its N domain (recognized by B9) is required for CD8α binding. Removal of the N-domain glycosylated residues reduces B9 recognition, CD8α binding affinity, and activation of LcK. Therefore, conformational changes in CEACAM5 glycosylation site are critical for its interaction with CD8α. CEACAM5-activated CD8(+) T cells acquire the ability to suppress the proliferation of CD4(+) T cells in vitro in the presence of interleukin (IL)-15 or IL-7. We provide new insights into the role of CEACAM5 and define its specific immunoregulatory properties among the CEACAMs expressed on IECs. We suggest that unique set of interactions between CEACAM5, CD1d, and CD8 render CD1d more class I-like molecule, facilitating antigen presentation and activation of CD8(+)-suppressor regulatory T cells.
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