Cargando…

Functional Analysis of Dishevelled-3 Phosphorylation Identifies Distinct Mechanisms Driven by Casein Kinase 1ϵ and Frizzled5

Dishevelled-3 (Dvl3), a key component of the Wnt signaling pathways, acts downstream of Frizzled (Fzd) receptors and gets heavily phosphorylated in response to pathway activation by Wnt ligands. Casein kinase 1ϵ (CK1ϵ) was identified as the major kinase responsible for Wnt-induced Dvl3 phosphorylati...

Descripción completa

Detalles Bibliográficos
Autores principales: Bernatík, Ondřej, Šedová, Kateřina, Schille, Carolin, Ganji, Ranjani Sri, Červenka, Igor, Trantírek, Lukáš, Schambony, Alexandra, Zdráhal, Zbyněk, Bryja, Vítězslav
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4156093/
https://www.ncbi.nlm.nih.gov/pubmed/24993822
http://dx.doi.org/10.1074/jbc.M114.590638
_version_ 1782333676259901440
author Bernatík, Ondřej
Šedová, Kateřina
Schille, Carolin
Ganji, Ranjani Sri
Červenka, Igor
Trantírek, Lukáš
Schambony, Alexandra
Zdráhal, Zbyněk
Bryja, Vítězslav
author_facet Bernatík, Ondřej
Šedová, Kateřina
Schille, Carolin
Ganji, Ranjani Sri
Červenka, Igor
Trantírek, Lukáš
Schambony, Alexandra
Zdráhal, Zbyněk
Bryja, Vítězslav
author_sort Bernatík, Ondřej
collection PubMed
description Dishevelled-3 (Dvl3), a key component of the Wnt signaling pathways, acts downstream of Frizzled (Fzd) receptors and gets heavily phosphorylated in response to pathway activation by Wnt ligands. Casein kinase 1ϵ (CK1ϵ) was identified as the major kinase responsible for Wnt-induced Dvl3 phosphorylation. Currently it is not clear which Dvl residues are phosphorylated and what is the consequence of individual phosphorylation events. In the present study we employed mass spectrometry to analyze in a comprehensive way the phosphorylation of human Dvl3 induced by CK1ϵ. Our analysis revealed >50 phosphorylation sites on Dvl3; only a minority of these sites was found dynamically induced after co-expression of CK1ϵ, and surprisingly, phosphorylation of one cluster of modified residues was down-regulated. Dynamically phosphorylated sites were analyzed functionally. Mutations within PDZ domain (S280A and S311A) reduced the ability of Dvl3 to activate TCF/LEF (T-cell factor/lymphoid enhancer factor)-driven transcription and induce secondary axis in Xenopus embryos. In contrast, mutations of clustered Ser/Thr in the Dvl3 C terminus prevented ability of CK1ϵ to induce electrophoretic mobility shift of Dvl3 and its even subcellular localization. Surprisingly, mobility shift and subcellular localization changes induced by Fzd5, a Wnt receptor, were in all these mutants indistinguishable from wild type Dvl3. In summary, our data on the molecular level (i) support previous the assumption that CK1ϵ acts via phosphorylation of distinct residues as the activator as well as the shut-off signal of Wnt/β-catenin signaling and (ii) suggest that CK1ϵ acts on Dvl via different mechanism than Fzd5.
format Online
Article
Text
id pubmed-4156093
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-41560932014-09-05 Functional Analysis of Dishevelled-3 Phosphorylation Identifies Distinct Mechanisms Driven by Casein Kinase 1ϵ and Frizzled5 Bernatík, Ondřej Šedová, Kateřina Schille, Carolin Ganji, Ranjani Sri Červenka, Igor Trantírek, Lukáš Schambony, Alexandra Zdráhal, Zbyněk Bryja, Vítězslav J Biol Chem Signal Transduction Dishevelled-3 (Dvl3), a key component of the Wnt signaling pathways, acts downstream of Frizzled (Fzd) receptors and gets heavily phosphorylated in response to pathway activation by Wnt ligands. Casein kinase 1ϵ (CK1ϵ) was identified as the major kinase responsible for Wnt-induced Dvl3 phosphorylation. Currently it is not clear which Dvl residues are phosphorylated and what is the consequence of individual phosphorylation events. In the present study we employed mass spectrometry to analyze in a comprehensive way the phosphorylation of human Dvl3 induced by CK1ϵ. Our analysis revealed >50 phosphorylation sites on Dvl3; only a minority of these sites was found dynamically induced after co-expression of CK1ϵ, and surprisingly, phosphorylation of one cluster of modified residues was down-regulated. Dynamically phosphorylated sites were analyzed functionally. Mutations within PDZ domain (S280A and S311A) reduced the ability of Dvl3 to activate TCF/LEF (T-cell factor/lymphoid enhancer factor)-driven transcription and induce secondary axis in Xenopus embryos. In contrast, mutations of clustered Ser/Thr in the Dvl3 C terminus prevented ability of CK1ϵ to induce electrophoretic mobility shift of Dvl3 and its even subcellular localization. Surprisingly, mobility shift and subcellular localization changes induced by Fzd5, a Wnt receptor, were in all these mutants indistinguishable from wild type Dvl3. In summary, our data on the molecular level (i) support previous the assumption that CK1ϵ acts via phosphorylation of distinct residues as the activator as well as the shut-off signal of Wnt/β-catenin signaling and (ii) suggest that CK1ϵ acts on Dvl via different mechanism than Fzd5. American Society for Biochemistry and Molecular Biology 2014-08-22 2014-07-03 /pmc/articles/PMC4156093/ /pubmed/24993822 http://dx.doi.org/10.1074/jbc.M114.590638 Text en © 2014 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/) applies to Author Choice Articles
spellingShingle Signal Transduction
Bernatík, Ondřej
Šedová, Kateřina
Schille, Carolin
Ganji, Ranjani Sri
Červenka, Igor
Trantírek, Lukáš
Schambony, Alexandra
Zdráhal, Zbyněk
Bryja, Vítězslav
Functional Analysis of Dishevelled-3 Phosphorylation Identifies Distinct Mechanisms Driven by Casein Kinase 1ϵ and Frizzled5
title Functional Analysis of Dishevelled-3 Phosphorylation Identifies Distinct Mechanisms Driven by Casein Kinase 1ϵ and Frizzled5
title_full Functional Analysis of Dishevelled-3 Phosphorylation Identifies Distinct Mechanisms Driven by Casein Kinase 1ϵ and Frizzled5
title_fullStr Functional Analysis of Dishevelled-3 Phosphorylation Identifies Distinct Mechanisms Driven by Casein Kinase 1ϵ and Frizzled5
title_full_unstemmed Functional Analysis of Dishevelled-3 Phosphorylation Identifies Distinct Mechanisms Driven by Casein Kinase 1ϵ and Frizzled5
title_short Functional Analysis of Dishevelled-3 Phosphorylation Identifies Distinct Mechanisms Driven by Casein Kinase 1ϵ and Frizzled5
title_sort functional analysis of dishevelled-3 phosphorylation identifies distinct mechanisms driven by casein kinase 1ϵ and frizzled5
topic Signal Transduction
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4156093/
https://www.ncbi.nlm.nih.gov/pubmed/24993822
http://dx.doi.org/10.1074/jbc.M114.590638
work_keys_str_mv AT bernatikondrej functionalanalysisofdishevelled3phosphorylationidentifiesdistinctmechanismsdrivenbycaseinkinase1eandfrizzled5
AT sedovakaterina functionalanalysisofdishevelled3phosphorylationidentifiesdistinctmechanismsdrivenbycaseinkinase1eandfrizzled5
AT schillecarolin functionalanalysisofdishevelled3phosphorylationidentifiesdistinctmechanismsdrivenbycaseinkinase1eandfrizzled5
AT ganjiranjanisri functionalanalysisofdishevelled3phosphorylationidentifiesdistinctmechanismsdrivenbycaseinkinase1eandfrizzled5
AT cervenkaigor functionalanalysisofdishevelled3phosphorylationidentifiesdistinctmechanismsdrivenbycaseinkinase1eandfrizzled5
AT trantireklukas functionalanalysisofdishevelled3phosphorylationidentifiesdistinctmechanismsdrivenbycaseinkinase1eandfrizzled5
AT schambonyalexandra functionalanalysisofdishevelled3phosphorylationidentifiesdistinctmechanismsdrivenbycaseinkinase1eandfrizzled5
AT zdrahalzbynek functionalanalysisofdishevelled3phosphorylationidentifiesdistinctmechanismsdrivenbycaseinkinase1eandfrizzled5
AT bryjavitezslav functionalanalysisofdishevelled3phosphorylationidentifiesdistinctmechanismsdrivenbycaseinkinase1eandfrizzled5