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Analysis of substrate specificity and cyclin Y binding of PCTAIRE-1 kinase

PCTAIRE-1 (cyclin-dependent kinase [CDK] 16) is a highly conserved serine/threonine kinase that belongs to the CDK family of protein kinases. Little is known regarding PCTAIRE-1 regulation and function and no robust assay exists to assess PCTAIRE-1 activity mainly due to a lack of information regard...

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Autores principales: Shehata, Saifeldin N., Hunter, Roger W., Ohta, Eriko, Peggie, Mark W., Lou, Hua Jane, Sicheri, Frank, Zeqiraj, Elton, Turk, Benjamin E., Sakamoto, Kei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science Ltd 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3590450/
https://www.ncbi.nlm.nih.gov/pubmed/22796189
http://dx.doi.org/10.1016/j.cellsig.2012.06.018
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author Shehata, Saifeldin N.
Hunter, Roger W.
Ohta, Eriko
Peggie, Mark W.
Lou, Hua Jane
Sicheri, Frank
Zeqiraj, Elton
Turk, Benjamin E.
Sakamoto, Kei
author_facet Shehata, Saifeldin N.
Hunter, Roger W.
Ohta, Eriko
Peggie, Mark W.
Lou, Hua Jane
Sicheri, Frank
Zeqiraj, Elton
Turk, Benjamin E.
Sakamoto, Kei
author_sort Shehata, Saifeldin N.
collection PubMed
description PCTAIRE-1 (cyclin-dependent kinase [CDK] 16) is a highly conserved serine/threonine kinase that belongs to the CDK family of protein kinases. Little is known regarding PCTAIRE-1 regulation and function and no robust assay exists to assess PCTAIRE-1 activity mainly due to a lack of information regarding its preferred consensus motif and the lack of bona fide substrates. We used positional scanning peptide library technology and identified the substrate-specificity requirements of PCTAIRE-1 and subsequently elaborated a peptide substrate termed PCTAIRE-tide. Recombinant PCTAIRE-1 displayed vastly improved enzyme kinetics on PCTAIRE-tide compared to a widely used generic CDK substrate peptide. PCTAIRE-tide also greatly improved detection of endogenous PCTAIRE-1 activity. Similar to other CDKs, PCTAIRE-1 requires a proline residue immediately C-terminal to the phosphoacceptor site (+ 1) for optimal activity. PCTAIRE-1 has a unique preference for a basic residue at + 4, but not at + 3 position (a key characteristic for CDKs). We also demonstrate that PCTAIRE-1 binds to a novel cyclin family member, cyclin Y, which increased PCTAIRE-1 activity towards PCTAIRE-tide > 100-fold. We hypothesised that cyclin Y binds and activates PCTAIRE-1 in a way similar to which cyclin A2 binds and activates CDK2. Point mutants of cyclin Y predicted to disrupt PCTAIRE-1-cyclin Y binding severely prevented complex formation and activation of PCTAIRE-1. We have identified PCTAIRE-tide as a powerful tool to study the regulation of PCTAIRE-1. Our understanding of the molecular interaction between PCTAIRE-1 and cyclin Y further facilitates future investigation of the functions of PCTAIRE-1 kinase.
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spelling pubmed-35904502013-03-07 Analysis of substrate specificity and cyclin Y binding of PCTAIRE-1 kinase Shehata, Saifeldin N. Hunter, Roger W. Ohta, Eriko Peggie, Mark W. Lou, Hua Jane Sicheri, Frank Zeqiraj, Elton Turk, Benjamin E. Sakamoto, Kei Cell Signal Article PCTAIRE-1 (cyclin-dependent kinase [CDK] 16) is a highly conserved serine/threonine kinase that belongs to the CDK family of protein kinases. Little is known regarding PCTAIRE-1 regulation and function and no robust assay exists to assess PCTAIRE-1 activity mainly due to a lack of information regarding its preferred consensus motif and the lack of bona fide substrates. We used positional scanning peptide library technology and identified the substrate-specificity requirements of PCTAIRE-1 and subsequently elaborated a peptide substrate termed PCTAIRE-tide. Recombinant PCTAIRE-1 displayed vastly improved enzyme kinetics on PCTAIRE-tide compared to a widely used generic CDK substrate peptide. PCTAIRE-tide also greatly improved detection of endogenous PCTAIRE-1 activity. Similar to other CDKs, PCTAIRE-1 requires a proline residue immediately C-terminal to the phosphoacceptor site (+ 1) for optimal activity. PCTAIRE-1 has a unique preference for a basic residue at + 4, but not at + 3 position (a key characteristic for CDKs). We also demonstrate that PCTAIRE-1 binds to a novel cyclin family member, cyclin Y, which increased PCTAIRE-1 activity towards PCTAIRE-tide > 100-fold. We hypothesised that cyclin Y binds and activates PCTAIRE-1 in a way similar to which cyclin A2 binds and activates CDK2. Point mutants of cyclin Y predicted to disrupt PCTAIRE-1-cyclin Y binding severely prevented complex formation and activation of PCTAIRE-1. We have identified PCTAIRE-tide as a powerful tool to study the regulation of PCTAIRE-1. Our understanding of the molecular interaction between PCTAIRE-1 and cyclin Y further facilitates future investigation of the functions of PCTAIRE-1 kinase. Elsevier Science Ltd 2012-11 /pmc/articles/PMC3590450/ /pubmed/22796189 http://dx.doi.org/10.1016/j.cellsig.2012.06.018 Text en © 2012 Elsevier Inc. https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Article
Shehata, Saifeldin N.
Hunter, Roger W.
Ohta, Eriko
Peggie, Mark W.
Lou, Hua Jane
Sicheri, Frank
Zeqiraj, Elton
Turk, Benjamin E.
Sakamoto, Kei
Analysis of substrate specificity and cyclin Y binding of PCTAIRE-1 kinase
title Analysis of substrate specificity and cyclin Y binding of PCTAIRE-1 kinase
title_full Analysis of substrate specificity and cyclin Y binding of PCTAIRE-1 kinase
title_fullStr Analysis of substrate specificity and cyclin Y binding of PCTAIRE-1 kinase
title_full_unstemmed Analysis of substrate specificity and cyclin Y binding of PCTAIRE-1 kinase
title_short Analysis of substrate specificity and cyclin Y binding of PCTAIRE-1 kinase
title_sort analysis of substrate specificity and cyclin y binding of pctaire-1 kinase
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3590450/
https://www.ncbi.nlm.nih.gov/pubmed/22796189
http://dx.doi.org/10.1016/j.cellsig.2012.06.018
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