The pivotal role of a novel free fatty acid receptor GPR164 in the intestinal barrier function
Ikeda, T.; Masujima, Y.; Watanabe, K.; Nishida, A.; Yamano, M.; Igarashi, M.; Sasaki, N.; Hironori, K.; Kimura, I.
Show abstract
GPR164 is a novel free fatty acid receptor, activated by both short-chain fatty acids and medium-chain fatty acids, and expressed throughout the gastrointestinal tract. Although GPR164 is reported to be involved in the release of gut hormones, the physiological functions of this receptor in the maintenance of intestinal homeostasis remain unclear. In this study, we explored the role of GPR164 in regulating intestinal barrier function using mice lacking Gpr164 gene (Gpr164-/-). A loss-of-function mutation in GPR164 promoted cell proliferation and disrupted the intestinal barrier function in both Caco-2 cell line and mice. Genome-wide RNA-seq analysis revealed that GPR164 deletion caused aberrant wnt/{beta}-catenin signaling, and the intraperitoneal injection of wnt/{beta}-catenin inhibitor ameliorated a series of abnormalities of Gpr164-/- mice. Gpr164-/- mice also exhibited gut microbial dysbiosis and severe inflammation, indicating that deletion of Gpr164 causes similar pathologies observed in patients with inflammation bowel disease (IBD). Thus, our findings uncover the pivotal role of GPR164 in the maintenance of intestinal barrier function, providing an attractive clinical target for IBD.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Loss of intestinal endosome associated protein sorting nexin 27 disrupts epithelial barrier and promotes inflammation 97%
- Fmo5 plays a sex-specific role in goblet cell maturation and mucus barrier formation 95%
- Genetically induced mouse model for colon-specific epithelial cell tumorigenesis driven by loss of K8 and Apc 95%
Similar papers in this journal
- A hepatocyte-specific transcriptional program driven by Rela and Stat3 exacerbates experimental colitis in mice by modulating bile synthesis 96%
- Mechano-regulation of GLP-1 production by Piezo1 in intestinal L cells 95%
- Peptidoglycan-Chi3l1 interaction shapes gut microbiota in intestinal mucus layer 95%
Similar papers in this journal
- Epithelial NSD2 maintains FMOs-mediated taurine biosynthesis to prevent intestinal barrier disruption 97%
- Metabolic rescue ameliorates mitochondrial encephalo-cardiomyopathy in murine and human iPSC models of Leigh syndrome 89%
- Interleukin-22 mediated renal metabolic reprogramming via PFKFB3 to treat kidney injury 88%
Similar papers in this journal
- Intestinal barrier function in the naked mole-rat: an emergent model for gastrointestinal insights 96%
- Single-cell transcriptomics predict novel potential regulators of acute epithelial restitution in the ischemia-injured intestine 92%
- The RNA-binding protein Imp1 promotes a Spdef transcriptional program and mucus fucosylation during necrotizing enterocolitis 92%
Similar papers in this journal
- Intestinal Bacteria Maintain Adult Enteric Nervous System and Nitrinergic Neurons via Toll-like Receptor 2-induced Neurogenesis in Mice 96%
- SMAD4 suppresses colitis-associated carcinoma through inhibition of CCL20/CCR6-mediated inflammation 94%
- γδ intraepithelial lymphocytes facilitate pathological epithelial cell shedding via CD103-mediated granzyme release. 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.