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Published on: May 6, 2013
Type 1 Diabetes Prone NOD Mice Have Diminished Cxcr1 mRNA Expression in Polymorphonuclear Neutrophils and CD4+ T
Karine Haurogné1, Marija Pavlovic2, Hélène Rogniaux2
1INRA USC1383, IECM, Nantes, France; LUNAM Université, Oniris, EA4644, Nantes, France.
Abstract:
In humans, CXCR1 and CXCR2 are two homologous proteins that bind ELR+ chemokines. Both receptors play fundamental roles in neutrophil functions such as migration and reactive oxygen species production. Mouse Cxcr1 and Cxcr2 genes are located in an insulin-dependent diabetes genetic susceptibility locus. The non obese diabetic (NOD) mouse is a spontaneous well-described animal model for insulin-dependent type 1 diabetes. In this disease, insulin deficiency results from the destruction of insulin-producing beta cells by autoreactive T lymphocytes. This slow-progressing disease is dependent on both environmental and genetic factors. Here, we report descriptive data about the Cxcr1 gene in NOD mice. We demonstrate decreased expression of mRNA for Cxcr1 in neutrophils and CD4+ lymphocytes isolated from NOD mice compared to other strains, related to reduced NOD Cxcr1 gene promoter activity. Looking for Cxcr1 protein, we next analyze the membrane proteome of murine neutrophils by mass spectrometry. Although Cxcr2 protein is clearly found in murine neutrophils, we did not find evidence of Cxcr1 peptides using this method. Nevertheless, in view of recently-published experimental data obtained in NOD mice, we argue for possible Cxcr1 involvement in type 1 diabetes pathogenesis.
Insights
Researchers found decreased expression of the Cxcr1 gene in neutrophils and CD4+ lymphocytes of non-obese diabetic (NOD) mice, suggesting a potential role for Cxcr1 in type 1 diabetes development.
Area of Science:
- Immunology
- Genetics
- Endocrinology
Background:
- CXCR1 and CXCR2 are homologous receptors binding ELR+ chemokines, crucial for neutrophil functions.
- The mouse Cxcr1 and Cxcr2 genes are linked to insulin-dependent diabetes susceptibility.
- The non-obese diabetic (NOD) mouse model develops autoimmune type 1 diabetes.
Purpose of the Study:
- To investigate the role of the Cxcr1 gene in NOD mice, a model for type 1 diabetes.
- To analyze Cxcr1 gene and protein expression in immune cells of NOD mice.
Main Methods:
- Quantitative analysis of Cxcr1 mRNA expression in neutrophils and CD4+ lymphocytes.
- Assessment of Cxcr1 gene promoter activity.
- Mass spectrometry-based proteomic analysis of murine neutrophil membrane.
Main Results:
- Decreased Cxcr1 mRNA expression was observed in NOD mouse neutrophils and CD4+ lymphocytes compared to other strains.
- Reduced Cxcr1 gene promoter activity correlated with decreased mRNA levels.
- Cxcr1 protein peptides were not detected in murine neutrophils via mass spectrometry, while Cxcr2 was identified.
Conclusions:
- Cxcr1 expression is significantly reduced in immune cells of NOD mice.
- The findings suggest a potential involvement of Cxcr1 in the pathogenesis of type 1 diabetes.
- Further research is warranted to elucidate the precise role of Cxcr1 in diabetes.

