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A Protective Role of NOD2 on Oxazolone-induced Intestinal Inflammation Through IL-1β-mediated Signalling Pathway
Thomas Secher1,2, Aurélie Couturier1, Ludovic Huot3
1INEM, Orléans University, CNRS UMR 7355, F-45071, Orléans, France.
Background And Aims:
NOD2 has emerged as a critical player in the induction of both Th1 and Th2 responses for potentiation and polarisation of antigen-dependent immunity. Loss-of-function mutations in the NOD2-encoding gene and deregulation of its downstream signalling pathway have been linked to Crohn's disease. Although it is well documented that NOD2 is capable of sensing bacterial muramyl dipeptide, it remains counter-intuitive to link development of overt intestinal inflammation to a loss of bacterial-induced inflammatory response. We hypothesised that a T helper bias could also contribute to an autoimmune-like colitis different from inflammation that is fully fledged by Th1 type cells.
Methods:
An oedematous bowel wall with a mixed Th1/Th2 response was induced in mice by intrarectal instillation of the haptenating agent oxazolone. Survival and clinical scoring were evaluated. At several time points after instillation, colonic damage was assessed by macroscopic and microscopic observations. To evaluate the involvement of NOD2 in immunochemical phenomena, quantitative polymerase chain reaction [PCR] and flow cytometry analysis were performed. Bone marrow chimera experimentation allowed us to evaluate the role of haematopoietic/non-hematopoietic NOD2-expressing cells.
Results:
Herein, we identified a key regulatory circuit whereby NOD2-mediated sensing of a muramyl dipeptide [MDP] by radio-resistant cells improves colitis with a mixed Th1/Th2 response that is induced by oxazolone. Genetic ablation of either Nod2 or Ripk2 precipitated oxazolone colitis that is predominantly linked to a lack of interferon-gamma. Bone marrow chimera experiments revealed that inactivation of Nod2 signalling in non-haematopoietic cells is causing a biased M1-M2 polarisation of macrophages and a decreased frequency of splenic regulatory T cells that correlates with an impaired activation of CD4 + T cells within mesenteric lymph nodes. Mechanistically, mice were protected from oxazolone-induced colitis upon administration of MDP in an interleukin-1- and interleukin-23-dependent manner.
Conclusions:
These findings indicate that Nod2 signalling may prevent pathological conversion of T helper cells for maintenance of tissue homeostasis.
Insights
NOD2 signaling, crucial for immunity, normally prevents colitis. Loss of NOD2 function in non-immune cells promotes T helper cell imbalance and intestinal inflammation, highlighting NOD2
Area of Science:
- Immunology
- Gastroenterology
- Cell Biology
Background:
- Nucleotide-binding oligomerization domain-containing protein 2 (NOD2) is vital for immune responses, with mutations linked to Crohn's disease.
- The role of NOD2 in sensing bacterial muramyl dipeptide (MDP) and its connection to intestinal inflammation, particularly in loss-of-function scenarios, remains counter-intuitive.
- A T helper cell bias may contribute to autoimmune-like colitis, distinct from Th1-mediated inflammation.
Purpose of the Study:
- To investigate the role of NOD2 signaling in regulating T helper cell responses and maintaining intestinal homeostasis.
- To elucidate the mechanisms by which NOD2 loss-of-function contributes to colitis development.
- To explore the potential of NOD2 agonists in preventing intestinal inflammation.
Main Methods:
- Oxazolone-induced colitis model in mice to assess Th1/Th2 responses, colonic damage, and survival.
- Quantitative PCR and flow cytometry to analyze NOD2 involvement in immunochemical phenomena.
- Bone marrow chimera experiments to differentiate roles of hematopoietic and non-hematopoietic NOD2-expressing cells.
Main Results:
- NOD2-mediated sensing of muramyl dipeptide (MDP) by radio-resistant cells exacerbates oxazolone-induced colitis with a mixed Th1/Th2 response.
- Genetic ablation of Nod2 or Ripk2 leads to colitis predominantly due to a lack of interferon-gamma.
- Inactivation of NOD2 in non-hematopoietic cells causes M1-M2 macrophage polarization bias, reduced splenic regulatory T cells, and impaired CD4+ T cell activation, while MDP administration protects against colitis via IL-1 and IL-23.
Conclusions:
- NOD2 signaling is critical for preventing pathological T helper cell conversion.
- Dysregulation of NOD2 in non-hematopoietic cells contributes to intestinal inflammation by altering immune cell polarization and function.
- NOD2 signaling plays a key role in maintaining intestinal tissue homeostasis.
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