Abstract
Wnt proteins bind to seven-transmembrane Frizzled receptors to mediate the important developmental, morphogenetic, and stem cell related tissue-regenerative effects of Wnt signaling. Dysregulated Wnt signaling is associated with many cancers. Currently, there are no drug candidates or even tool compounds that modulate Wnt-mediated receptor trafficking, and subsequent Wnt signaling. We examined libraries of FDA-approved drugs for their utility as Frizzled internalization modulators, employing a primary imaged-based GFP fluorescence assay that uses Frizzled1 endocytosis as the readout. We now report that the anti-helminthic niclosamide, a drug used for the treatment of tapeworm, promotes Frizzled1 endocytosis, downregulates Dishevelled-2 protein, and inhibits Wnt3A-stimulated beta-catenin stabilization and LEF/TCF reporter activity. Additionally, following niclosamide-mediated internalization, the Frizzled1 receptor colocalizes in vesicles containing transferrin and agonist-activated beta(2)-adrenergic receptor. Therefore, niclosamide may serve as a negative modulator of Wnt/Frizzled1 signaling by depleting upstream signaling molecules (i.e., Frizzled and Dishevelled) and moreover may provide a valuable means of studying the physiological consequences of Wnt signaling.
MeSH Terms
Animals
Antinematodal Agents/pharmacology
Cell Line
Cell Line, Tumor
Endocytosis/drug effects
Frizzled Receptors/metabolism
Green Fluorescent Proteins/metabolism
Humans
Microscopy, Confocal
Niclosamide/pharmacology
Rats
Signal Transduction/drug effects
Wnt Proteins/metabolism
beta Catenin/metabolism
Chemicals
Antinematodal Agents
Frizzled Receptors
Wnt Proteins
beta Catenin
Green Fluorescent Proteins
Niclosamide
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Chen Minyong
Department of Medicine, Duke University Medical Center, Durham, North Carolina 27710, USA.
Wang Jiangbo
Lu Jiuyi
Bond Michael C
Ren Xiu-Rong
Lyerly H Kim
Barak Larry S
Chen Wei
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