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Published on: April 21, 2015
P2Y1R Ligation Suppresses Th17 Cell Differentiation and Alleviates Colonic Inflammation in an AMPK-Dependent Manner
Yao-Yao Chang1, Qiu-Chan Huan2,3, Jiao Peng3
1School of Pharmaceutical Sciences, Health Science Center, Shenzhen University, Shenzhen, China.
Abstract:
P2Y1 receptor is a G-protein-coupled receptor that plays a critical role in the immune response of inflammatory bowel diseases. However, its regulatory effects on CD4+ T cell response have not been fully elucidated. The study aimed to characterize the role of P2Y1R in Th17 cell differentiation and colonic inflammation. Our results demonstrated that P2Y1R was significantly increased in the splenocytes of colitic mice, which was positively associated with the expression of RORγt and IL-17A. P2Y1R deficiency significantly ameliorated DSS-induced colitis and its Th17 responses. In parallel, P2Y1R deficiency greatly impaired the differentiation of Th17 cell, down-regulated the mRNA expression of IL-17A and RORγt, and protein expression of RORγt in vitro. More importantly, it was found that P2Y1R deficiency markedly increased AMPK phosphorylation of Th17 polarized CD4+ T cells, and antagonist of AMPK significantly reversed the inhibitory effect of P2Y1R deficiency on Th17 cell generation in vivo and in vitro. Overall, these findings demonstrated that P2Y1R deficiency could suppress Th17 cell differentiation in an AMPK-dependent manner to ameliorate colitis, and P2Y1R can act as an important regulator of Th17 cell differentiation to control colonic inflammation.
Insights
P2Y1 receptor deficiency ameliorates colitis by suppressing Th17 cell differentiation via AMPK signaling. This highlights P2Y1 receptor as a key regulator in inflammatory bowel diseases.
Area of Science:
- Immunology
- Gastroenterology
Background:
- P2Y1 receptor (P2Y1R) is a G-protein-coupled receptor involved in immune responses.
- Its precise role in CD4+ T cell responses and inflammatory bowel diseases (IBD) requires further clarification.
Purpose of the Study:
- To investigate the role of P2Y1R in Th17 cell differentiation and its impact on colonic inflammation.
Main Methods:
- Utilized mouse models of DSS-induced colitis.
- Analyzed splenocyte P2Y1R expression in relation to RORγt and IL-17A.
- Assessed Th17 cell differentiation and AMPK phosphorylation in P2Y1R-deficient CD4+ T cells.
- Employed AMPK antagonists to evaluate its role in Th17 cell generation.
Main Results:
- P2Y1R expression was elevated in colitic mice, correlating with RORγt and IL-17A levels.
- P2Y1R deficiency attenuated DSS-induced colitis and Th17 responses.
- P2Y1R deficiency impaired Th17 cell differentiation, reducing IL-17A and RORγt expression.
- P2Y1R deficiency increased AMPK phosphorylation in Th17 cells, and AMPK antagonism reversed these effects.
Conclusions:
- P2Y1R deficiency suppresses Th17 cell differentiation through an AMPK-dependent pathway, ameliorating colitis.
- P2Y1R is identified as a significant regulator of Th17 cell differentiation and colonic inflammation.
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