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CK1ε and p120‐catenin control Ror2 function in noncanonical Wnt signaling

Canonical and noncanonical Wnt pathways share some common elements but differ in the responses they evoke. Similar to Wnt ligands acting through the canonical pathway, Wnts that activate the noncanonical signaling, such as Wnt5a, promote Disheveled (Dvl) phosphorylation and its binding to the Frizzl...

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Autores principales: Curto, Josué, Del Valle‐Pérez, Beatriz, Villarroel, Aida, Fuertes, Guillem, Vinyoles, Meritxell, Peña, Raúl, García de Herreros, Antonio, Duñach, Mireia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5928365/
https://www.ncbi.nlm.nih.gov/pubmed/29465811
http://dx.doi.org/10.1002/1878-0261.12184
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author Curto, Josué
Del Valle‐Pérez, Beatriz
Villarroel, Aida
Fuertes, Guillem
Vinyoles, Meritxell
Peña, Raúl
García de Herreros, Antonio
Duñach, Mireia
author_facet Curto, Josué
Del Valle‐Pérez, Beatriz
Villarroel, Aida
Fuertes, Guillem
Vinyoles, Meritxell
Peña, Raúl
García de Herreros, Antonio
Duñach, Mireia
author_sort Curto, Josué
collection PubMed
description Canonical and noncanonical Wnt pathways share some common elements but differ in the responses they evoke. Similar to Wnt ligands acting through the canonical pathway, Wnts that activate the noncanonical signaling, such as Wnt5a, promote Disheveled (Dvl) phosphorylation and its binding to the Frizzled (Fz) Wnt receptor complex. The protein kinase CK1ε is required for Dvl/Fz association in both canonical and noncanonical signaling. Here we show that differently to its binding to canonical Wnt receptor complex, CK1ε does not require p120‐catenin for the association with the Wnt5a co‐receptor Ror2. Wnt5a promotes the formation of the Ror2–Fz complex and enables the activation of Ror2‐bound CK1ε by Fz‐associated protein phosphatase 2A. Moreover, CK1ε also regulates Ror2 protein levels; CK1ε association stabilizes Ror2, which undergoes lysosomal‐dependent degradation in the absence of this kinase. Although p120‐catenin is not required for CK1ε association with Ror2, it also participates in this signaling pathway as p120‐catenin binds and maintains Ror2 at the plasma membrane; in p120‐depleted cells, Ror2 is rapidly internalized through a clathrin‐dependent mechanism. Accordingly, downregulation of p120‐catenin or CK1ε affects late responses to Wnt5a that are also sensitive to Ror2, such as SIAH2 transcription, cell invasion, or cortical actin polarization. Our results explain how CK1ε is activated by noncanonical Wnt and identify p120‐catenin and CK1ε as two critical factors controlling Ror2 function.
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spelling pubmed-59283652018-05-07 CK1ε and p120‐catenin control Ror2 function in noncanonical Wnt signaling Curto, Josué Del Valle‐Pérez, Beatriz Villarroel, Aida Fuertes, Guillem Vinyoles, Meritxell Peña, Raúl García de Herreros, Antonio Duñach, Mireia Mol Oncol Research Articles Canonical and noncanonical Wnt pathways share some common elements but differ in the responses they evoke. Similar to Wnt ligands acting through the canonical pathway, Wnts that activate the noncanonical signaling, such as Wnt5a, promote Disheveled (Dvl) phosphorylation and its binding to the Frizzled (Fz) Wnt receptor complex. The protein kinase CK1ε is required for Dvl/Fz association in both canonical and noncanonical signaling. Here we show that differently to its binding to canonical Wnt receptor complex, CK1ε does not require p120‐catenin for the association with the Wnt5a co‐receptor Ror2. Wnt5a promotes the formation of the Ror2–Fz complex and enables the activation of Ror2‐bound CK1ε by Fz‐associated protein phosphatase 2A. Moreover, CK1ε also regulates Ror2 protein levels; CK1ε association stabilizes Ror2, which undergoes lysosomal‐dependent degradation in the absence of this kinase. Although p120‐catenin is not required for CK1ε association with Ror2, it also participates in this signaling pathway as p120‐catenin binds and maintains Ror2 at the plasma membrane; in p120‐depleted cells, Ror2 is rapidly internalized through a clathrin‐dependent mechanism. Accordingly, downregulation of p120‐catenin or CK1ε affects late responses to Wnt5a that are also sensitive to Ror2, such as SIAH2 transcription, cell invasion, or cortical actin polarization. Our results explain how CK1ε is activated by noncanonical Wnt and identify p120‐catenin and CK1ε as two critical factors controlling Ror2 function. John Wiley and Sons Inc. 2018-03-14 2018-05 /pmc/articles/PMC5928365/ /pubmed/29465811 http://dx.doi.org/10.1002/1878-0261.12184 Text en © 2018 The Authors. Published by FEBS Press and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Curto, Josué
Del Valle‐Pérez, Beatriz
Villarroel, Aida
Fuertes, Guillem
Vinyoles, Meritxell
Peña, Raúl
García de Herreros, Antonio
Duñach, Mireia
CK1ε and p120‐catenin control Ror2 function in noncanonical Wnt signaling
title CK1ε and p120‐catenin control Ror2 function in noncanonical Wnt signaling
title_full CK1ε and p120‐catenin control Ror2 function in noncanonical Wnt signaling
title_fullStr CK1ε and p120‐catenin control Ror2 function in noncanonical Wnt signaling
title_full_unstemmed CK1ε and p120‐catenin control Ror2 function in noncanonical Wnt signaling
title_short CK1ε and p120‐catenin control Ror2 function in noncanonical Wnt signaling
title_sort ck1ε and p120‐catenin control ror2 function in noncanonical wnt signaling
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5928365/
https://www.ncbi.nlm.nih.gov/pubmed/29465811
http://dx.doi.org/10.1002/1878-0261.12184
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