Cargando…

PP2A/B55 and Fcp1 Regulate Greatwall and Ensa Dephosphorylation during Mitotic Exit

Entry into mitosis is triggered by activation of Cdk1 and inactivation of its counteracting phosphatase PP2A/B55. Greatwall kinase inactivates PP2A/B55 via its substrates Ensa and ARPP19. Both Greatwall and Ensa/ARPP19 are regulated by phosphorylation, but the dynamic regulation of Greatwall activit...

Descripción completa

Detalles Bibliográficos
Autores principales: Hégarat, Nadia, Vesely, Clare, Vinod, P. K., Ocasio, Cory, Peter, Nisha, Gannon, Julian, Oliver, Antony W., Novák, Béla, Hochegger, Helfrid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3879168/
https://www.ncbi.nlm.nih.gov/pubmed/24391510
http://dx.doi.org/10.1371/journal.pgen.1004004
_version_ 1782297928280309760
author Hégarat, Nadia
Vesely, Clare
Vinod, P. K.
Ocasio, Cory
Peter, Nisha
Gannon, Julian
Oliver, Antony W.
Novák, Béla
Hochegger, Helfrid
author_facet Hégarat, Nadia
Vesely, Clare
Vinod, P. K.
Ocasio, Cory
Peter, Nisha
Gannon, Julian
Oliver, Antony W.
Novák, Béla
Hochegger, Helfrid
author_sort Hégarat, Nadia
collection PubMed
description Entry into mitosis is triggered by activation of Cdk1 and inactivation of its counteracting phosphatase PP2A/B55. Greatwall kinase inactivates PP2A/B55 via its substrates Ensa and ARPP19. Both Greatwall and Ensa/ARPP19 are regulated by phosphorylation, but the dynamic regulation of Greatwall activity and the phosphatases that control Greatwall kinase and its substrates are poorly understood. To address these questions we applied a combination of mathematical modelling and experiments using phospho-specific antibodies to monitor Greatwall, Ensa/ARPP19 and Cdk substrate phosphorylation during mitotic entry and exit. We demonstrate that PP2A/B55 is required for Gwl dephosphorylation at the essential Cdk site Thr194. Ensa/ARPP19 dephosphorylation is mediated by the RNA Polymerase II carboxy terminal domain phosphatase Fcp1. Surprisingly, inhibition or depletion of neither Fcp1 nor PP2A appears to block dephosphorylation of the bulk of mitotic Cdk1 substrates during mitotic exit. Taken together our results suggest a hierarchy of phosphatases coordinating Greatwall, Ensa/ARPP19 and Cdk substrate dephosphorylation during mitotic exit.
format Online
Article
Text
id pubmed-3879168
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-38791682014-01-03 PP2A/B55 and Fcp1 Regulate Greatwall and Ensa Dephosphorylation during Mitotic Exit Hégarat, Nadia Vesely, Clare Vinod, P. K. Ocasio, Cory Peter, Nisha Gannon, Julian Oliver, Antony W. Novák, Béla Hochegger, Helfrid PLoS Genet Research Article Entry into mitosis is triggered by activation of Cdk1 and inactivation of its counteracting phosphatase PP2A/B55. Greatwall kinase inactivates PP2A/B55 via its substrates Ensa and ARPP19. Both Greatwall and Ensa/ARPP19 are regulated by phosphorylation, but the dynamic regulation of Greatwall activity and the phosphatases that control Greatwall kinase and its substrates are poorly understood. To address these questions we applied a combination of mathematical modelling and experiments using phospho-specific antibodies to monitor Greatwall, Ensa/ARPP19 and Cdk substrate phosphorylation during mitotic entry and exit. We demonstrate that PP2A/B55 is required for Gwl dephosphorylation at the essential Cdk site Thr194. Ensa/ARPP19 dephosphorylation is mediated by the RNA Polymerase II carboxy terminal domain phosphatase Fcp1. Surprisingly, inhibition or depletion of neither Fcp1 nor PP2A appears to block dephosphorylation of the bulk of mitotic Cdk1 substrates during mitotic exit. Taken together our results suggest a hierarchy of phosphatases coordinating Greatwall, Ensa/ARPP19 and Cdk substrate dephosphorylation during mitotic exit. Public Library of Science 2014-01-02 /pmc/articles/PMC3879168/ /pubmed/24391510 http://dx.doi.org/10.1371/journal.pgen.1004004 Text en © 2014 Hégarat 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
Hégarat, Nadia
Vesely, Clare
Vinod, P. K.
Ocasio, Cory
Peter, Nisha
Gannon, Julian
Oliver, Antony W.
Novák, Béla
Hochegger, Helfrid
PP2A/B55 and Fcp1 Regulate Greatwall and Ensa Dephosphorylation during Mitotic Exit
title PP2A/B55 and Fcp1 Regulate Greatwall and Ensa Dephosphorylation during Mitotic Exit
title_full PP2A/B55 and Fcp1 Regulate Greatwall and Ensa Dephosphorylation during Mitotic Exit
title_fullStr PP2A/B55 and Fcp1 Regulate Greatwall and Ensa Dephosphorylation during Mitotic Exit
title_full_unstemmed PP2A/B55 and Fcp1 Regulate Greatwall and Ensa Dephosphorylation during Mitotic Exit
title_short PP2A/B55 and Fcp1 Regulate Greatwall and Ensa Dephosphorylation during Mitotic Exit
title_sort pp2a/b55 and fcp1 regulate greatwall and ensa dephosphorylation during mitotic exit
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3879168/
https://www.ncbi.nlm.nih.gov/pubmed/24391510
http://dx.doi.org/10.1371/journal.pgen.1004004
work_keys_str_mv AT hegaratnadia pp2ab55andfcp1regulategreatwallandensadephosphorylationduringmitoticexit
AT veselyclare pp2ab55andfcp1regulategreatwallandensadephosphorylationduringmitoticexit
AT vinodpk pp2ab55andfcp1regulategreatwallandensadephosphorylationduringmitoticexit
AT ocasiocory pp2ab55andfcp1regulategreatwallandensadephosphorylationduringmitoticexit
AT peternisha pp2ab55andfcp1regulategreatwallandensadephosphorylationduringmitoticexit
AT gannonjulian pp2ab55andfcp1regulategreatwallandensadephosphorylationduringmitoticexit
AT oliverantonyw pp2ab55andfcp1regulategreatwallandensadephosphorylationduringmitoticexit
AT novakbela pp2ab55andfcp1regulategreatwallandensadephosphorylationduringmitoticexit
AT hocheggerhelfrid pp2ab55andfcp1regulategreatwallandensadephosphorylationduringmitoticexit