Cell
Volume 143, Issue 7, 23 December 2010, Pages 1136-1148
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Article
Wnt Signaling Requires Sequestration of Glycogen Synthase Kinase 3 inside Multivesicular Endosomes

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Summary

Canonical Wnt signaling requires inhibition of Glycogen Synthase Kinase 3 (GSK3) activity, but the molecular mechanism by which this is achieved remains unclear. Here, we report that Wnt signaling triggers the sequestration of GSK3 from the cytosol into multivesicular bodies (MVBs), so that this enzyme becomes separated from its many cytosolic substrates. Endocytosed Wnt colocalized with GSK3 in acidic vesicles positive for endosomal markers. After Wnt addition, endogenous GSK3 activity decreased in the cytosol, and GSK3 became protected from protease treatment inside membrane-bounded organelles. Cryoimmunoelectron microscopy showed that these corresponded to MVBs. Two proteins essential for MVB formation, HRS/Vps27 and Vps4, were required for Wnt signaling. The sequestration of GSK3 extended the half-life of many other proteins in addition to β-Catenin, including an artificial Wnt-regulated reporter protein containing GSK3 phosphorylation sites. We conclude that multivesicular endosomes are essential components of the Wnt signal-transduction pathway.

Highlights

► Canonical Wnt signaling causes the sequestration of GSK3 inside endosomal vesicles ► Protease protection and cryoimmuno-EM show that GSK3 is sequestered inside MVBs ► The MVB-forming ESCRT components HRS/Vps27 and Vps4 are required for Wnt signaling ► In pulse-chase experiments overall cellular protein half-life is prolonged by Wnt3a

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3

These authors contributed equally to this work

4

Present address: Department of Neurological Surgery, University of California, San Francisco, San Francisco, CA 94143-0525, USA