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Induction of Murine Intestinal Inflammation by Adoptive Transfer of Effector CD4+CD45RBhigh T Cells into Immunodeficient Mice
Published on: April 21, 2015
G2A Signaling Dampens Colitic Inflammation via Production of IFN-γ
S Courtney Frasch1, Eóin N McNamee2, Douglas Kominsky2
1Department of Pediatrics, National Jewish Health, Denver, CO 80206; fraschc@njhealth.org.
Abstract:
Proinflammatory consequences have been described for lysophosphatidylcholine, a lipid product of cellular injury, signaling via the G protein-coupled receptor G2A on myeloid and lymphoid inflammatory cells. This prompted the hypothesis that genetic deletion of G2A would limit intestinal inflammation in a mouse model of colitis induced by dextran sodium sulfate. Surprisingly, G2A(-/-) mice exhibited significantly worsened colitis compared with wild-type mice, as demonstrated by disease activity, colon shortening, histology, and elevated IL-6 and IL-5 in colon tissues. Investigation of inflammatory cells recruited to inflamed G2A(-/-) colons showed significantly more TNF-α(+) and Ly6C(hi)MHCII(-) proinflammatory monocytes and eosinophils than in wild-type colons. Both monocytes and eosinophils were pathogenic as their depletion abolished the excess inflammation in G2A(-/-) mice. G2A(-/-) mice also had less IFN-γ in inflamed colon tissues than wild-type mice. Fewer CD4(+) lymphocytes were recruited to inflamed G2A(-/-) colons, and fewer colonic lymphocytes produced IFN-γ upon ex vivo stimulation. Administration of IFN-γ to G2A(-/-) mice during dextran sodium sulfate exposure abolished the excess colitic inflammation and reduced colonic IL-5 and eosinophil numbers to levels seen in wild-type mice. Furthermore, IFN-γ reduced the numbers of TNF-α(+) monocyte and enhanced their maturation from Ly6C(hi)MHCII(-) to Ly6C(int)MHCII(+) Taken together, the data suggest that G2A signaling serves to dampen intestinal inflammation via the production of IFN-γ, which, in turn, enhances monocyte maturation to a less inflammatory program and ultimately reduces eosinophil-induced injury of colonic tissues.
Insights
Genetic deletion of G2A worsened intestinal inflammation in mice, contrary to expectations. This study reveals G2A signaling dampens colitis by promoting IFN-γ production, which resolves monocyte and eosinophil-driven inflammation.
Area of Science:
- Immunology
- Gastroenterology
- Cell Biology
Background:
- Lysophosphatidylcholine, a product of cellular injury, signals via G protein-coupled receptor G2A on inflammatory cells.
- G2A signaling was hypothesized to limit intestinal inflammation.
Purpose of the Study:
- To investigate the role of G2A in dextran sodium sulfate-induced colitis using G2A knockout mice.
- To elucidate the mechanisms by which G2A influences intestinal inflammation.
Main Methods:
- Dextran sodium sulfate (DSS)-induced colitis model in wild-type and G2A(-/-) mice.
- Analysis of disease activity, colon histology, and cytokine profiles (IL-6, IL-5, IFN-γ).
- Flow cytometry to characterize inflammatory cell populations (monocytes, lymphocytes, eosinophils) and their functions.
Main Results:
- G2A(-/-) mice exhibited significantly worsened colitis with increased IL-6 and IL-5.
- Inflamed G2A(-/-) colons showed increased proinflammatory monocytes (TNF-α(+), Ly6C(hi)MHCII(-)) and eosinophils.
- IFN-γ administration to G2A(-/-) mice ameliorated colitis, reduced eosinophils, and modulated monocyte maturation.
Conclusions:
- G2A signaling dampens intestinal inflammation through IFN-γ production.
- IFN-γ promotes monocyte maturation to a less inflammatory phenotype and reduces eosinophil-induced colonic injury.
- G2A plays a protective role in experimental colitis.
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