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Updated: Oct 4, 2025

In vitro Functional Characterization of Mouse Colorectal Afferent Endings
Published on: January 21, 2015
Mice expressing fluorescent PAR2 reveal that endocytosis mediates colonic inflammation and pain
Rocco Latorre1,2, Alan Hegron1,2, Chloe J Peach1,2
1Department of Molecular Pathobiology, Neuroscience Institute, New York University, New York, NY 10010.
Abstract:
G protein-coupled receptors (GPCRs) regulate many pathophysiological processes and are major therapeutic targets. The impact of disease on the subcellular distribution and function of GPCRs is poorly understood. We investigated trafficking and signaling of protease-activated receptor 2 (PAR2) in colitis. To localize PAR2 and assess redistribution during disease, we generated knockin mice expressing PAR2 fused to monomeric ultrastable green fluorescent protein (muGFP). PAR2-muGFP signaled and trafficked normally. PAR2 messenger RNA was detected at similar levels in Par and wild-type mice. Immunostaining with a GFP antibody and RNAScope in situ hybridization using F2rl1 (PAR2) and Gfp probes revealed that PAR2-muGFP was expressed in epithelial cells of the small and large intestine and in subsets of enteric and dorsal root ganglia neurons. In healthy mice, PAR2-muGFP was prominently localized to the basolateral membrane of colonocytes. In mice with colitis, PAR2-muGFP was depleted from the plasma membrane of colonocytes and redistributed to early endosomes, consistent with generation of proinflammatory proteases that activate PAR2 PAR2 agonists stimulated endocytosis of PAR2 and recruitment of Gαq, Gαi, and β-arrestin to early endosomes of T84 colon carcinoma cells. PAR2 agonists increased paracellular permeability of colonic epithelial cells, induced colonic inflammation and hyperalgesia in mice, and stimulated proinflammatory cytokine release from segments of human colon. Knockdown of dynamin-2 (Dnm2), the major colonocyte isoform, and Dnm inhibition attenuated PAR2 endocytosis, signaling complex assembly and colonic inflammation and hyperalgesia. Thus, PAR2 endocytosis sustains protease-evoked inflammation and nociception and PAR2 in endosomes is a potential therapeutic target for colitis.
Insights
Protease-activated receptor 2 (PAR2) moves to endosomes during colitis, driving inflammation and pain. Inhibiting its endocytosis may treat inflammatory bowel disease and associated hyperalgesia.
Area of Science:
- Gastroenterology
- Cell Biology
- Neuroscience
Background:
- G protein-coupled receptors (GPCRs) are crucial in disease but their cellular behavior during illness is unclear.
- Protease-activated receptor 2 (PAR2) plays a role in inflammation and pain, but its function in colitis requires further investigation.
Purpose of the Study:
- To investigate the subcellular localization and signaling of PAR2 in the context of colitis.
- To determine if PAR2 trafficking changes during colitis and if these changes contribute to disease pathology.
Main Methods:
- Generated knockin mice expressing PAR2 fused to green fluorescent protein (PAR2-muGFP) for visualization.
- Utilized immunostaining, RNAScope in situ hybridization, and live-cell imaging to track PAR2.
- Assessed PAR2 signaling, endocytosis, and downstream effects on colonic permeability, inflammation, and hyperalgesia in mouse models and human colon segments.
- Investigated the role of dynamin-2 in PAR2 trafficking and associated pathology.
Main Results:
- In healthy mice, PAR2 is at the basolateral membrane of colonocytes; in colitis, it redistributes to early endosomes.
- PAR2 activation stimulates its endocytosis and the recruitment of signaling proteins (Gαq, Gαi, β-arrestin) to endosomes.
- PAR2 activation increases colonic epithelial permeability, induces inflammation and hyperalgesia in mice, and stimulates pro-inflammatory cytokine release in human colon.
- Dynamin-2 inhibition attenuates PAR2 endocytosis, signaling, and associated inflammation and hyperalgesia.
Conclusions:
- PAR2 endocytosis in colonocytes is a key mechanism sustaining protease-evoked inflammation and nociception in colitis.
- Endosomal PAR2 represents a potential therapeutic target for managing colitis and associated pain.
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