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Comprehensive substrate specificity profiling of the human Nek kinome reveals unexpected signaling outputs

Human NimA-related kinases (Neks) have multiple mitotic and non-mitotic functions, but few substrates are known. We systematically determined the phosphorylation-site motifs for the entire Nek kinase family, except for Nek11. While all Nek kinases strongly select for hydrophobic residues in the −3 p...

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Autores principales: van de Kooij, Bert, Creixell, Pau, van Vlimmeren, Anne, Joughin, Brian A, Miller, Chad J, Haider, Nasir, Simpson, Craig D, Linding, Rune, Stambolic, Vuk, Turk, Benjamin E, Yaffe, Michael B
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6570481/
https://www.ncbi.nlm.nih.gov/pubmed/31124786
http://dx.doi.org/10.7554/eLife.44635
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author van de Kooij, Bert
Creixell, Pau
van Vlimmeren, Anne
Joughin, Brian A
Miller, Chad J
Haider, Nasir
Simpson, Craig D
Linding, Rune
Stambolic, Vuk
Turk, Benjamin E
Yaffe, Michael B
author_facet van de Kooij, Bert
Creixell, Pau
van Vlimmeren, Anne
Joughin, Brian A
Miller, Chad J
Haider, Nasir
Simpson, Craig D
Linding, Rune
Stambolic, Vuk
Turk, Benjamin E
Yaffe, Michael B
author_sort van de Kooij, Bert
collection PubMed
description Human NimA-related kinases (Neks) have multiple mitotic and non-mitotic functions, but few substrates are known. We systematically determined the phosphorylation-site motifs for the entire Nek kinase family, except for Nek11. While all Nek kinases strongly select for hydrophobic residues in the −3 position, the family separates into four distinct groups based on specificity for a serine versus threonine phospho-acceptor, and preference for basic or acidic residues in other positions. Unlike Nek1-Nek9, Nek10 is a dual-specificity kinase that efficiently phosphorylates itself and peptide substrates on serine and tyrosine, and its activity is enhanced by tyrosine auto-phosphorylation. Nek10 dual-specificity depends on residues in the HRD+2 and APE-4 positions that are uncommon in either serine/threonine or tyrosine kinases. Finally, we show that the phosphorylation-site motifs for the mitotic kinases Nek6, Nek7 and Nek9 are essentially identical to that of their upstream activator Plk1, suggesting that Nek6/7/9 function as phospho-motif amplifiers of Plk1 signaling.
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spelling pubmed-65704812019-06-17 Comprehensive substrate specificity profiling of the human Nek kinome reveals unexpected signaling outputs van de Kooij, Bert Creixell, Pau van Vlimmeren, Anne Joughin, Brian A Miller, Chad J Haider, Nasir Simpson, Craig D Linding, Rune Stambolic, Vuk Turk, Benjamin E Yaffe, Michael B eLife Biochemistry and Chemical Biology Human NimA-related kinases (Neks) have multiple mitotic and non-mitotic functions, but few substrates are known. We systematically determined the phosphorylation-site motifs for the entire Nek kinase family, except for Nek11. While all Nek kinases strongly select for hydrophobic residues in the −3 position, the family separates into four distinct groups based on specificity for a serine versus threonine phospho-acceptor, and preference for basic or acidic residues in other positions. Unlike Nek1-Nek9, Nek10 is a dual-specificity kinase that efficiently phosphorylates itself and peptide substrates on serine and tyrosine, and its activity is enhanced by tyrosine auto-phosphorylation. Nek10 dual-specificity depends on residues in the HRD+2 and APE-4 positions that are uncommon in either serine/threonine or tyrosine kinases. Finally, we show that the phosphorylation-site motifs for the mitotic kinases Nek6, Nek7 and Nek9 are essentially identical to that of their upstream activator Plk1, suggesting that Nek6/7/9 function as phospho-motif amplifiers of Plk1 signaling. eLife Sciences Publications, Ltd 2019-05-24 /pmc/articles/PMC6570481/ /pubmed/31124786 http://dx.doi.org/10.7554/eLife.44635 Text en © 2019, van de Kooij et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Biochemistry and Chemical Biology
van de Kooij, Bert
Creixell, Pau
van Vlimmeren, Anne
Joughin, Brian A
Miller, Chad J
Haider, Nasir
Simpson, Craig D
Linding, Rune
Stambolic, Vuk
Turk, Benjamin E
Yaffe, Michael B
Comprehensive substrate specificity profiling of the human Nek kinome reveals unexpected signaling outputs
title Comprehensive substrate specificity profiling of the human Nek kinome reveals unexpected signaling outputs
title_full Comprehensive substrate specificity profiling of the human Nek kinome reveals unexpected signaling outputs
title_fullStr Comprehensive substrate specificity profiling of the human Nek kinome reveals unexpected signaling outputs
title_full_unstemmed Comprehensive substrate specificity profiling of the human Nek kinome reveals unexpected signaling outputs
title_short Comprehensive substrate specificity profiling of the human Nek kinome reveals unexpected signaling outputs
title_sort comprehensive substrate specificity profiling of the human nek kinome reveals unexpected signaling outputs
topic Biochemistry and Chemical Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6570481/
https://www.ncbi.nlm.nih.gov/pubmed/31124786
http://dx.doi.org/10.7554/eLife.44635
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