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Expression and distribution patterns of Mas-related gene receptor subtypes A-H in the mouse intestine:
Leela Rani Avula1, Roeland Buckinx, Herman Favoreel
1Department of Veterinary Sciences, Laboratory of Cell Biology and Histology, University of Antwerp, Groenenborgerlaan 171, 2020 Antwerp, Belgium.
Abstract:
Mas-related gene (Mrg) receptors constitute a subfamily of G protein-coupled receptors that are implicated in nociception, and are as such considered potential targets for pain therapies. Furthermore, some Mrgs have been suggested to play roles in the regulation of inflammatory responses to non-immunological activation of mast cells and in mast cell-neuron communication. Except for MrgD, E and F, whose changed expression has been revealed during inflammation in the mouse intestine in our earlier studies, information concerning the remaining cloned mouse Mrg subtypes in the gastrointestinal tract during (patho) physiological conditions is lacking. Therefore, the present study aimed at identifying the presence and putative function of these remaining cloned Mrg subtypes (n = 19) in the (inflamed) mouse intestine. Using reverse transcriptase-PCR, quantitative-PCR and multiple immunofluorescence staining with commercial and newly custom-developed antibodies, we compared the ileum and the related dorsal root ganglia (DRG) of non-inflamed mice with those of two models of intestinal inflammation, i.e., intestinal schistosomiasis and 2,4,6-trinitrobenzene sulfonic acid-induced ileitis. In the non-inflamed ileum and DRG, the majority of the Mrg subtypes examined were sparsely expressed, showing a neuron-specific expression pattern. However, significant changes in the expression patterns of multiple Mrg subtypes were observed in the inflamed ileum; for instance, MrgA4, MrgB2and MrgB8 were expressed in a clearly increased number of enteric sensory neurons and in nerve fibers in the lamina propria, while de novo expression of MrgB10 was observed in enteric sensory neurons and in newly recruited mucosal mast cells (MMCs). The MrgB10 expressing MMCs were found to be in close contact with nerve fibers in the lamina propria. This is the first report on the expression of all cloned Mrg receptor subtypes in the (inflamed) mouse intestine. The observed changes in the expression and cellular localization of the Mrg subtypes suggest that these receptors are involved in the mediation of primary afferent responses, mast cell responses, and in neuroimmune communication during intestinal inflammation.
Insights
Mas-related gene (Mrg) receptors are involved in pain and inflammation. This study reveals their changing expression in the inflamed mouse intestine, suggesting roles in neuroimmune communication and mast cell responses.
Area of Science:
- Neurogastroenterology
- Immunology
- G protein-coupled receptors
Background:
- Mas-related gene (Mrg) receptors, G protein-coupled receptors implicated in nociception, are potential pain therapy targets.
- Some Mrgs regulate inflammatory responses and mast cell-neuron communication.
- Limited information exists on most mouse Mrg subtypes in the gastrointestinal tract during physiological or pathological conditions.
Purpose of the Study:
- To identify the presence and function of 19 cloned mouse Mrg subtypes in the non-inflamed and inflamed mouse intestine.
- To investigate changes in Mrg expression during intestinal inflammation models.
Main Methods:
- Reverse transcriptase-PCR and quantitative-PCR were used to analyze Mrg expression.
- Multiple immunofluorescence staining with custom and commercial antibodies identified cellular localization.
- Ileum and dorsal root ganglia (DRG) from non-inflamed mice and two inflammation models (schistosomiasis, TNBS-induced ileitis) were compared.
Main Results:
- Most Mrg subtypes showed sparse, neuron-specific expression in the non-inflamed ileum and DRG.
- Significant changes in Mrg expression patterns were observed in the inflamed ileum.
- MrgA4, MrgB2, and MrgB8 increased in enteric sensory neurons and lamina propria nerve fibers; MrgB10 showed de novo expression in enteric neurons and mucosal mast cells (MMCs) in close contact with nerve fibers.
Conclusions:
- This is the first study to report on all cloned Mrg receptor subtypes in the (inflamed) mouse intestine.
- Altered Mrg expression and localization suggest their involvement in primary afferent signaling, mast cell responses, and neuroimmune communication during intestinal inflammation.
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