Blood vessel epicardial substance reduces LRP6 receptor and cytoplasmic beta-catenin levels to modulate Wnt signaling and intestinal homeostasis Journal Article


Authors: Thompson, J. J.; Short, S. P.; Parang, B.; Brown, R. E.; Li, C.; Ng, V. H.; Saito-Diaz, K.; Choksi, Y. A.; Washington, M. K.; Smith, J. J.; Fingleton, B.; Brand, T.; Lee, E.; Coffey, R. J.; Williams, C. S.
Article Title: Blood vessel epicardial substance reduces LRP6 receptor and cytoplasmic beta-catenin levels to modulate Wnt signaling and intestinal homeostasis
Abstract: Blood vessel epicardial substance (BVES, otherwise known as POPDC1) is an integral membrane protein known to regulate tight junction formation and epithelial-mesenchymal transition. BVES is underexpressed in a number of malignancies, including colorectal cancer. BVES loss leads to activation of the Wnt pathway, suggesting that decreased BVES expression functionally contributes to tumorigenesis. However, the mechanism by which BVES modulates Wnt signaling is unknown. Here, we confirm that BVES loss increases beta-catenin protein levels, leads to Wnt pathway activation in a ligand-independent fashion and coordinates with Wnt ligand to further increase Wnt signaling. We show that BVES loss increases levels and activation of the Wnt co-receptor, LRP6, in cell lines, murine adenoma tumoroids and human-derived colonoids. We also demonstrate that BVES interacts with LRP6. Finally, murine tumor modeling using a Wnt-driven genetic model and a chemically induced model of colorectal carcinogenesis demonstrate that BVES loss increases tumor multiplicity and dysplasia. Together, these results implicate BVES as an inhibitor of Wnt signaling, provide one of the first examples of a tight junction-associated protein regulating Wnt receptor levels, and expand the number of putative molecular targets for therapeutic intervention in colorectal cancer.
Keywords: gene; mutations; domain; activation; negative regulator; molecule; cancer statistics; organoids; mouse colon tumors; bves
Journal Title: Carcinogenesis
Volume: 40
Issue: 9
ISSN: 0143-3334
Publisher: Oxford University Press  
Date Published: 2019-09-01
Start Page: 1086
End Page: 1098
Language: English
ACCESSION: WOS:000493045100005
DOI: 10.1093/carcin/bgz007
PROVIDER: wos
PUBMED: 30689807
PMCID: PMC8067673
Notes: Article -- Source: Wos
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  1. Jesse Joshua Smith
    217 Smith