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Expression of Elafin and CD200 as Immune Checkpoint Molecules Involved in Celiac Disease
Candelaria Ponce-de-León1, Pedro Lorite1, Miguel Ángel López-Casado2
1Department of Experimental Biology, Faculty of Health Sciences, University of Jaén, 23071 Jaén, Spain.
Abstract:
We comprehensively evaluated the expression of therapeutically targetable immune checkpoint molecules involved in celiac disease (CD). We have focused on the alteration of the CD200/CD200R pathway and Elafin expression in celiac disease and discussed their roles in regulating the immune response. There are limited data related to the expression or function of these molecules in celiac disease. This finding could significantly contribute to the understanding of the clinical manifestation of CD. CD200, CD200R and Elafin distributions were determined by ELISA and immunohistochemistry analyses in serum and biopsies of CD patients. Analyses of Th1 and Th17 cytokines were determined. PCR amplification of a fragment of the PI3 gene was carried out using genomic DNA isolated from whole blood samples of the study subjects. Different aliquots of the PCR reaction product were subjected to RFLP analysis for SNP genotyping and detection. We characterized the expression and function of the CD200-CD200R axis and PI3 in celiac disease. A significantly higher level of soluble CD200 and CD200R and lower expression of PI3 in serum of CD patients was observed compared to healthy controls. Consistent with our results, CD200 expression is regulated by IFN-gamma. Interaction of CD200/CD200R leads to production of type-Th1 and -Th17 cytokines. Regarding the PI3 genotype, the CT genotype proportion SNP rs1733103 and the GG genotype SNP rs41282752 were predominant in CD patients. SNP rs1733103 showed a significant association between the SNP variables and CD. In celiac disease the immune checkpoint is compromised or dysregulated, which can contribute to inflammation and the autoimmunity process. The study of these checkpoint points will lead to the development of targeted therapies aimed at restoring immunological balance in CD. Specific coding regions of the PI3 gene-splice variants predispose the Elafin protein, both at the transcriptional and post-translational levels, to modify its expression and function, resulting in reduced differential functional protein levels in patients with active celiac disease.
Insights
Celiac disease (CD) involves dysregulated immune checkpoints like CD200/CD200R and Elafin. Altered CD200/CD200R pathways and PI3 gene variants contribute to CD pathogenesis and inflammation.
Area of Science:
- Immunology
- Gastroenterology
- Genetics
Background:
- Celiac disease (CD) pathogenesis involves complex immune dysregulation.
- Limited data exists on immune checkpoint molecules, including CD200/CD200R and Elafin, in CD.
- Understanding these pathways is crucial for elucidating CD's clinical manifestations.
Purpose of the Study:
- To comprehensively evaluate the expression and function of immune checkpoint molecules (CD200/CD200R, Elafin) in celiac disease.
- To investigate the role of the CD200-CD200R axis and PI3 gene variants in CD.
- To explore potential therapeutic targets for restoring immune balance in CD.
Main Methods:
- ELISA and immunohistochemistry for CD200, CD200R, and Elafin in serum and biopsies.
- Analysis of Th1 and Th17 cytokines.
- PCR and RFLP for PI3 gene SNP genotyping (rs1733103, rs41282752).
Main Results:
- Elevated soluble CD200 and CD200R levels in CD patients' serum.
- Reduced PI3 gene expression in CD patients' serum.
- Predominance of CT genotype (rs1733103) and GG genotype (rs41282752) in CD patients.
- Significant association between SNP rs1733103 and CD.
- CD200 expression is regulated by IFN-gamma, and its interaction with CD200R promotes Th1/Th17 cytokines.
Conclusions:
- Immune checkpoints are dysregulated in celiac disease, contributing to inflammation and autoimmunity.
- Altered CD200-CD200R pathway and PI3 gene variants are implicated in CD pathogenesis.
- Targeting these immune checkpoints offers potential for novel celiac disease therapies.

