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The E3 ubiquitin ligase component, Cereblon, is an evolutionarily conserved regulator of Wnt signaling

Chen Shen, Anmada Nayak, Leif R. Neitzel, Amber A. Adams, Maya Silver-Isenstadt, Leah M. Sawyer, Hassina Benchabane, Huilan Wang, Nawat Bunnag, Bin Li, Daniel T. Wynn, Fan Yang, Marta García-Contreras, Charles H. Williams, Sivanesan Dakshanamurthy, Charles C. Hong, Nagi G. Ayad, Anthony J. Capobianco, Yashi Ahmed, Ethan Lee, David J. Robbins

2021Nature Communications44 citationsDOIOpen Access PDF

Abstract

E3 ubiquitin ligase, induces cancer cell death by targeting key neo-substrates for degradation. Despite this clinical significance, the physiological regulation of CRBN remains largely unknown. Herein we demonstrate that Wnt, the extracellular ligand of an essential signal transduction pathway, promotes the CRBN-dependent degradation of a subset of proteins. These substrates include Casein kinase 1α (CK1α), a negative regulator of Wnt signaling that functions as a key component of the β-Catenin destruction complex. Wnt stimulation induces the interaction of CRBN with CK1α and its resultant ubiquitination, and in contrast with previous reports does so in the absence of an IMiD. Mechanistically, the destruction complex is critical in maintaining CK1α stability in the absence of Wnt, and in recruiting CRBN to target CK1α for degradation in response to Wnt. CRBN is required for physiological Wnt signaling, as modulation of CRBN in zebrafish and Drosophila yields Wnt-driven phenotypes. These studies demonstrate an IMiD-independent, Wnt-driven mechanism of CRBN regulation and provide a means of controlling Wnt pathway activity by CRBN, with relevance for development and disease.

Topics & Concepts

Wnt signaling pathwayCereblonUbiquitin ligaseCell biologyRegulatorCasein kinase 1Signal transductionBiologyUbiquitinChemistryGeneticsKinaseProtein kinase AGeneProtein Degradation and InhibitorsMultiple Myeloma Research and TreatmentsHistone Deacetylase Inhibitors Research