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Functional consequences of the macrophage stimulating protein 689C inflammatory bowel disease risk allele
Steven E Kauder1, Lydia Santell2, Elaine Mai3
1Discovery Immunology, Genentech Inc., South San Francisco, California, United States of America.
Background:
Macrophage stimulating protein (MSP) is a serum growth factor that binds to and activates the receptor tyrosine kinase, Recepteur d'Origine Nantais (RON). A non-synonymous coding variant in MSP (689C) has been associated with genetic susceptibility to both Crohn's disease and ulcerative colitis, two major types of inflammatory bowel disease (IBD) characterized by chronic inflammation of the digestive tract. We investigated the consequences of this polymorphism for MSP-RON pathway activity and IBD pathogenesis.
Methods:
RON expression patterns were examined on mouse and human cells and tissues under normal and disease conditions to identify cell types regulated by MSP-RON. Recombinant MSP variants were tested for their ability to bind and stimulate RON and undergo proteolytic activation. MSP concentrations were quantified in the serum of individuals carrying the MSP 689R and 689C alleles.
Results:
In intestinal tissue, RON was primarily expressed by epithelial cells under normal and disease conditions. The 689C polymorphism had no impact on the ability of MSP to bind to or signal through RON. In a cohort of normal individuals and IBD patients, carriers of the 689C polymorphism had lower concentrations of MSP in their serum.
Conclusions:
By reducing the quantities of circulating MSP, the 689C polymorphism, or a variant in linkage disequilibrium with this polymorphism, may impact RON ligand availability and thus receptor activity. Given the known functions of RON in regulating wound healing and our analysis of RON expression patterns in human intestinal tissue, these data suggest that decreased RON activity may impact the efficiency of epithelial repair and thus underlie the increased IBD susceptibility associated with the MSP 689C allele.
Insights
The 689C variant in Macrophage stimulating protein (MSP) lowers its serum levels, potentially impairing epithelial repair and increasing inflammatory bowel disease (IBD) susceptibility. This impacts the MSP-RON pathway in IBD pathogenesis.
Area of Science:
- Molecular biology
- Immunology
- Genetics
Background:
- Macrophage stimulating protein (MSP) activates the RON receptor tyrosine kinase.
- A variant (689C) in MSP is linked to genetic susceptibility for inflammatory bowel disease (IBD).
Purpose of the Study:
- Investigate the functional consequences of the MSP 689C polymorphism on MSP-RON pathway activity.
- Determine the role of this polymorphism in IBD pathogenesis.
Main Methods:
- Examined RON expression in mouse and human tissues.
- Tested recombinant MSP variants for binding, activation, and signaling through RON.
- Quantified serum MSP concentrations in individuals with MSP 689R and 689C alleles.
Main Results:
- RON is expressed by intestinal epithelial cells.
- The 689C polymorphism does not affect MSP binding or signaling via RON.
- Individuals with the 689C polymorphism have lower serum MSP concentrations.
Conclusions:
- Reduced circulating MSP due to the 689C polymorphism may decrease RON ligand availability.
- This could impair epithelial repair, contributing to increased IBD susceptibility associated with the MSP 689C allele.
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