Cargando…

RP1 Is a Phosphorylation Target of CK2 and Is Involved in Cell Adhesion

RP1 (synonym: MAPRE2, EB2) is a member of the microtubule binding EB1 protein family, which interacts with APC, a key regulatory molecule in the Wnt signalling pathway. While the other EB1 proteins are well characterized the cellular function and regulation of RP1 remain speculative to date. However...

Descripción completa

Detalles Bibliográficos
Autores principales: Stenner, Frank, Liewen, Heike, Göttig, Stephan, Henschler, Reinhard, Markuly, Norbert, Kleber, Sascha, Faust, Michael, Mischo, Axel, Bauer, Stefan, Zweifel, Martin, Knuth, Alexander, Renner, Christoph, Wadle, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3701075/
https://www.ncbi.nlm.nih.gov/pubmed/23844040
http://dx.doi.org/10.1371/journal.pone.0067595
_version_ 1782275591489191936
author Stenner, Frank
Liewen, Heike
Göttig, Stephan
Henschler, Reinhard
Markuly, Norbert
Kleber, Sascha
Faust, Michael
Mischo, Axel
Bauer, Stefan
Zweifel, Martin
Knuth, Alexander
Renner, Christoph
Wadle, Andreas
author_facet Stenner, Frank
Liewen, Heike
Göttig, Stephan
Henschler, Reinhard
Markuly, Norbert
Kleber, Sascha
Faust, Michael
Mischo, Axel
Bauer, Stefan
Zweifel, Martin
Knuth, Alexander
Renner, Christoph
Wadle, Andreas
author_sort Stenner, Frank
collection PubMed
description RP1 (synonym: MAPRE2, EB2) is a member of the microtubule binding EB1 protein family, which interacts with APC, a key regulatory molecule in the Wnt signalling pathway. While the other EB1 proteins are well characterized the cellular function and regulation of RP1 remain speculative to date. However, recently RP1 has been implicated in pancreatic cancerogenesis. CK2 is a pleiotropic kinase involved in adhesion, proliferation and anti-apoptosis. Overexpression of protein kinase CK2 is a hallmark of many cancers and supports the malignant phenotype of tumor cells. In this study we investigate the interaction of protein kinase CK2 with RP1 and demonstrate that CK2 phosphorylates RP1 at Ser(236) in vitro. Stable RP1 expression in cell lines leads to a significant cleavage and down-regulation of N-cadherin and impaired adhesion. Cells expressing a Phospho-mimicking point mutant RP1-ASP(236) show a marked decrease of adhesion to endothelial cells under shear stress. Inversely, we found that the cells under shear stress downregulate endogenous RP1, most likely to improve cellular adhesion. Accordingly, when RP1 expression is suppressed by shRNA, cells lacking RP1 display significantly increased cell adherence to surfaces. In summary, RP1 phosphorylation at Ser(236) by CK2 seems to play a significant role in cell adhesion and might initiate new insights in the CK2 and EB1 family protein association.
format Online
Article
Text
id pubmed-3701075
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37010752013-07-10 RP1 Is a Phosphorylation Target of CK2 and Is Involved in Cell Adhesion Stenner, Frank Liewen, Heike Göttig, Stephan Henschler, Reinhard Markuly, Norbert Kleber, Sascha Faust, Michael Mischo, Axel Bauer, Stefan Zweifel, Martin Knuth, Alexander Renner, Christoph Wadle, Andreas PLoS One Research Article RP1 (synonym: MAPRE2, EB2) is a member of the microtubule binding EB1 protein family, which interacts with APC, a key regulatory molecule in the Wnt signalling pathway. While the other EB1 proteins are well characterized the cellular function and regulation of RP1 remain speculative to date. However, recently RP1 has been implicated in pancreatic cancerogenesis. CK2 is a pleiotropic kinase involved in adhesion, proliferation and anti-apoptosis. Overexpression of protein kinase CK2 is a hallmark of many cancers and supports the malignant phenotype of tumor cells. In this study we investigate the interaction of protein kinase CK2 with RP1 and demonstrate that CK2 phosphorylates RP1 at Ser(236) in vitro. Stable RP1 expression in cell lines leads to a significant cleavage and down-regulation of N-cadherin and impaired adhesion. Cells expressing a Phospho-mimicking point mutant RP1-ASP(236) show a marked decrease of adhesion to endothelial cells under shear stress. Inversely, we found that the cells under shear stress downregulate endogenous RP1, most likely to improve cellular adhesion. Accordingly, when RP1 expression is suppressed by shRNA, cells lacking RP1 display significantly increased cell adherence to surfaces. In summary, RP1 phosphorylation at Ser(236) by CK2 seems to play a significant role in cell adhesion and might initiate new insights in the CK2 and EB1 family protein association. Public Library of Science 2013-07-03 /pmc/articles/PMC3701075/ /pubmed/23844040 http://dx.doi.org/10.1371/journal.pone.0067595 Text en © 2013 Stenner et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Stenner, Frank
Liewen, Heike
Göttig, Stephan
Henschler, Reinhard
Markuly, Norbert
Kleber, Sascha
Faust, Michael
Mischo, Axel
Bauer, Stefan
Zweifel, Martin
Knuth, Alexander
Renner, Christoph
Wadle, Andreas
RP1 Is a Phosphorylation Target of CK2 and Is Involved in Cell Adhesion
title RP1 Is a Phosphorylation Target of CK2 and Is Involved in Cell Adhesion
title_full RP1 Is a Phosphorylation Target of CK2 and Is Involved in Cell Adhesion
title_fullStr RP1 Is a Phosphorylation Target of CK2 and Is Involved in Cell Adhesion
title_full_unstemmed RP1 Is a Phosphorylation Target of CK2 and Is Involved in Cell Adhesion
title_short RP1 Is a Phosphorylation Target of CK2 and Is Involved in Cell Adhesion
title_sort rp1 is a phosphorylation target of ck2 and is involved in cell adhesion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3701075/
https://www.ncbi.nlm.nih.gov/pubmed/23844040
http://dx.doi.org/10.1371/journal.pone.0067595
work_keys_str_mv AT stennerfrank rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT liewenheike rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT gottigstephan rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT henschlerreinhard rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT markulynorbert rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT klebersascha rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT faustmichael rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT mischoaxel rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT bauerstefan rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT zweifelmartin rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT knuthalexander rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT rennerchristoph rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion
AT wadleandreas rp1isaphosphorylationtargetofck2andisinvolvedincelladhesion