Blood vessel epicardial substance (BVES) reduces LRP6 receptor and cytoplasmic -catenin levels to modulate Wnt signaling and intestinal homeostasis
File(s)Thompson, JJ et al..pdf (2.57 MB)
Accepted version
Author(s)
Type
Journal Article
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 are unknown. Here we confirm that BVES loss increases -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 modelling using a Wnt-driven genetic model and a chemically-induced model of colorectal carcinogenesis demonstrates 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.
Date Issued
2019-09-01
Date Acceptance
2019-01-18
Citation
Carcinogenesis, 2019, 40 (9), pp.1086-1098
ISSN
1460-2180
Publisher
Oxford University Press (OUP)
Start Page
1086
End Page
1098
Journal / Book Title
Carcinogenesis
Volume
40
Issue
9
Copyright Statement
© 2019 Oxford University Press. This is a pre-copy-editing, author-produced version of an article accepted for publication in Carcinogenesis following peer review. The definitive publisher-authenticated version Carcinogenesis, bgz007, is available online at: https://dx.doi.org/10.1093/carcin/bgz007
Identifier
https://www.ncbi.nlm.nih.gov/pubmed/30689807
PII: 5299709
Subjects
Science & Technology
Life Sciences & Biomedicine
Oncology
MOUSE COLON TUMORS
NEGATIVE REGULATOR
CANCER STATISTICS
BVES
GENE
ACTIVATION
DOMAIN
MUTATIONS
ORGANOIDS
MOLECULE
1112 Oncology and Carcinogenesis
Oncology & Carcinogenesis
Publication Status
Published
Coverage Spatial
England
Date Publish Online
2019-01-23