Cargando…

Cyclin Y phosphorylation- and 14-3-3-binding-dependent activation of PCTAIRE-1/CDK16

PCTAIRE-1 [also known as cyclin-dependent kinase 16 (CDK16)] is implicated in various physiological processes such as neurite outgrowth and vesicle trafficking; however, its molecular regulation and downstream targets are largely unknown. Cyclin Y has recently been identified as a key interacting/ac...

Descripción completa

Detalles Bibliográficos
Autores principales: Shehata, Saifeldin N., Deak, Maria, Morrice, Nicholas A., Ohta, Eriko, Hunter, Roger W., Kalscheuer, Vera M., Sakamoto, Kei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4613515/
https://www.ncbi.nlm.nih.gov/pubmed/26205494
http://dx.doi.org/10.1042/BJ20150486
_version_ 1782396288801701888
author Shehata, Saifeldin N.
Deak, Maria
Morrice, Nicholas A.
Ohta, Eriko
Hunter, Roger W.
Kalscheuer, Vera M.
Sakamoto, Kei
author_facet Shehata, Saifeldin N.
Deak, Maria
Morrice, Nicholas A.
Ohta, Eriko
Hunter, Roger W.
Kalscheuer, Vera M.
Sakamoto, Kei
author_sort Shehata, Saifeldin N.
collection PubMed
description PCTAIRE-1 [also known as cyclin-dependent kinase 16 (CDK16)] is implicated in various physiological processes such as neurite outgrowth and vesicle trafficking; however, its molecular regulation and downstream targets are largely unknown. Cyclin Y has recently been identified as a key interacting/activating cyclin for PCTAIRE-1; however, the molecular mechanism by which it activates PCTAIRE-1 is undefined. In the present study, we initially performed protein sequence analysis and identified two candidate phosphorylation sites (Ser(12) and Ser(336)) on cyclin Y that might be catalysed by PCTAIRE-1. Although in vitro peptide analysis favoured Ser(12) as the candidate phosphorylation site, immunoblot analysis of cell lysates that had been transfected with wild-type (WT) or kinase-inactive (KI) PCTAIRE-1 together with WT or phospho-deficient mutants of cyclin Y suggested Ser(336), but not Ser(12), as a PCTAIRE-1-dependent phosphorylation site. Monitoring phosphorylation of Ser(336) may provide a useful read-out to assess cellular activity of PCTAIRE-1 in vivo; however, a phospho-deficient S336A mutant displayed normal interaction with PCTAIRE-1. Unbiased mass spectrometry and targeted mutagenesis analysis of cyclin Y identified key phosphorylation sites (Ser(100) and Ser(326)) required for 14-3-3 binding. Recombinant WT cyclin Y, but not a S100A/S326A mutant, prepared in COS-1 cells co-purified with 14-3-3 and was able to activate bacterially expressed recombinant PCTAIRE-1 in cell-free assays. Finally, we observed that recently identified PCTAIRE-1 variants found in patients with intellectual disability were unable to interact with cyclin Y, and were inactive enzymes. Collectively, the present work has revealed a new mechanistic insight into activation of PCTAIRE-1, which is mediated through interaction with the phosphorylated form of cyclin Y in complex with 14-3-3.
format Online
Article
Text
id pubmed-4613515
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Portland Press Ltd.
record_format MEDLINE/PubMed
spelling pubmed-46135152015-10-23 Cyclin Y phosphorylation- and 14-3-3-binding-dependent activation of PCTAIRE-1/CDK16 Shehata, Saifeldin N. Deak, Maria Morrice, Nicholas A. Ohta, Eriko Hunter, Roger W. Kalscheuer, Vera M. Sakamoto, Kei Biochem J Research Articles PCTAIRE-1 [also known as cyclin-dependent kinase 16 (CDK16)] is implicated in various physiological processes such as neurite outgrowth and vesicle trafficking; however, its molecular regulation and downstream targets are largely unknown. Cyclin Y has recently been identified as a key interacting/activating cyclin for PCTAIRE-1; however, the molecular mechanism by which it activates PCTAIRE-1 is undefined. In the present study, we initially performed protein sequence analysis and identified two candidate phosphorylation sites (Ser(12) and Ser(336)) on cyclin Y that might be catalysed by PCTAIRE-1. Although in vitro peptide analysis favoured Ser(12) as the candidate phosphorylation site, immunoblot analysis of cell lysates that had been transfected with wild-type (WT) or kinase-inactive (KI) PCTAIRE-1 together with WT or phospho-deficient mutants of cyclin Y suggested Ser(336), but not Ser(12), as a PCTAIRE-1-dependent phosphorylation site. Monitoring phosphorylation of Ser(336) may provide a useful read-out to assess cellular activity of PCTAIRE-1 in vivo; however, a phospho-deficient S336A mutant displayed normal interaction with PCTAIRE-1. Unbiased mass spectrometry and targeted mutagenesis analysis of cyclin Y identified key phosphorylation sites (Ser(100) and Ser(326)) required for 14-3-3 binding. Recombinant WT cyclin Y, but not a S100A/S326A mutant, prepared in COS-1 cells co-purified with 14-3-3 and was able to activate bacterially expressed recombinant PCTAIRE-1 in cell-free assays. Finally, we observed that recently identified PCTAIRE-1 variants found in patients with intellectual disability were unable to interact with cyclin Y, and were inactive enzymes. Collectively, the present work has revealed a new mechanistic insight into activation of PCTAIRE-1, which is mediated through interaction with the phosphorylated form of cyclin Y in complex with 14-3-3. Portland Press Ltd. 2015-07-23 2015-08-01 /pmc/articles/PMC4613515/ /pubmed/26205494 http://dx.doi.org/10.1042/BJ20150486 Text en © 2015 Authors http://creativecommons.org/licenses/by/3.0/ This is an open access article published by Portland Press Limited and distributed under the Creative Commons Attribution License 3.0 (http://creativecommons.org/licenses/by/3.0/) .
spellingShingle Research Articles
Shehata, Saifeldin N.
Deak, Maria
Morrice, Nicholas A.
Ohta, Eriko
Hunter, Roger W.
Kalscheuer, Vera M.
Sakamoto, Kei
Cyclin Y phosphorylation- and 14-3-3-binding-dependent activation of PCTAIRE-1/CDK16
title Cyclin Y phosphorylation- and 14-3-3-binding-dependent activation of PCTAIRE-1/CDK16
title_full Cyclin Y phosphorylation- and 14-3-3-binding-dependent activation of PCTAIRE-1/CDK16
title_fullStr Cyclin Y phosphorylation- and 14-3-3-binding-dependent activation of PCTAIRE-1/CDK16
title_full_unstemmed Cyclin Y phosphorylation- and 14-3-3-binding-dependent activation of PCTAIRE-1/CDK16
title_short Cyclin Y phosphorylation- and 14-3-3-binding-dependent activation of PCTAIRE-1/CDK16
title_sort cyclin y phosphorylation- and 14-3-3-binding-dependent activation of pctaire-1/cdk16
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4613515/
https://www.ncbi.nlm.nih.gov/pubmed/26205494
http://dx.doi.org/10.1042/BJ20150486
work_keys_str_mv AT shehatasaifeldinn cyclinyphosphorylationand1433bindingdependentactivationofpctaire1cdk16
AT deakmaria cyclinyphosphorylationand1433bindingdependentactivationofpctaire1cdk16
AT morricenicholasa cyclinyphosphorylationand1433bindingdependentactivationofpctaire1cdk16
AT ohtaeriko cyclinyphosphorylationand1433bindingdependentactivationofpctaire1cdk16
AT hunterrogerw cyclinyphosphorylationand1433bindingdependentactivationofpctaire1cdk16
AT kalscheuerveram cyclinyphosphorylationand1433bindingdependentactivationofpctaire1cdk16
AT sakamotokei cyclinyphosphorylationand1433bindingdependentactivationofpctaire1cdk16