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Publication : Ron receptor signaling is protective against DSS-induced colitis in mice.

First Author  Kulkarni RM Year  2014
Journal  Am J Physiol Gastrointest Liver Physiol Volume  306
Issue  12 Pages  G1065-74
PubMed ID  24742989 Mgi Jnum  J:221747
Mgi Id  MGI:5641440 Doi  10.1152/ajpgi.00421.2013
Citation  Kulkarni RM, et al. (2014) Ron receptor signaling is protective against DSS-induced colitis in mice. Am J Physiol Gastrointest Liver Physiol 306(12):G1065-74
abstractText  Inflammatory bowel diseases (IBD) are chronic inflammatory disorders of the intestine that result in painful and debilitating complications. Currently no cure exists for IBD, and treatments are primarily aimed at reducing inflammation to alleviate symptoms. Genome-wide linkage studies have identified the Ron receptor tyrosine kinase (TK) and its ligand, hepatocyte growth factor-like protein (HGFL), as genes highly associated with IBD. However, only scant information exists on the role of Ron or HGFL in IBD. Based on the linkage of Ron to IBD, we directly examined the biological role of Ron in colitis. Wild-type mice and mice lacking the TK signaling domain of Ron (TK-/- mice) were utilized in a well-characterized model of chronic colitis induced by cyclic exposure to dextran sulfate sodium. In this model, TK-/- mice were more susceptible to injury as judged by increased mortality compared with control mice and developed more severe colitis. Loss of Ron led to significantly reduced body weights and more aggressive clinical and histopathologies. Ron loss also resulted in a dramatic reduction in colonic epithelial cell proliferation and increased proinflammatory cytokine production, which was associated with alterations in important signaling pathways known to regulate IBD. Examination of human gene expression data further supports the contention that loss of Ron signaling is associated with IBD. In total, our studies point to important functional roles for Ron in IBD by regulating healing of the colonic epithelium and by controlling cytokine secretion.
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