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Phosphorylation-Dependent PIH1D1 Interactions Define Substrate Specificity of the R2TP Cochaperone Complex

The R2TP cochaperone complex plays a critical role in the assembly of multisubunit machines, including small nucleolar ribonucleoproteins (snoRNPs), RNA polymerase II, and the mTORC1 and SMG1 kinase complexes, but the molecular basis of substrate recognition remains unclear. Here, we describe a phos...

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Detalles Bibliográficos
Autores principales: Hořejší, Zuzana, Stach, Lasse, Flower, Thomas G., Joshi, Dhira, Flynn, Helen, Skehel, J. Mark, O’Reilly, Nicola J., Ogrodowicz, Roksana W., Smerdon, Stephen J., Boulton, Simon J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3989777/
https://www.ncbi.nlm.nih.gov/pubmed/24656813
http://dx.doi.org/10.1016/j.celrep.2014.03.013
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author Hořejší, Zuzana
Stach, Lasse
Flower, Thomas G.
Joshi, Dhira
Flynn, Helen
Skehel, J. Mark
O’Reilly, Nicola J.
Ogrodowicz, Roksana W.
Smerdon, Stephen J.
Boulton, Simon J.
author_facet Hořejší, Zuzana
Stach, Lasse
Flower, Thomas G.
Joshi, Dhira
Flynn, Helen
Skehel, J. Mark
O’Reilly, Nicola J.
Ogrodowicz, Roksana W.
Smerdon, Stephen J.
Boulton, Simon J.
author_sort Hořejší, Zuzana
collection PubMed
description The R2TP cochaperone complex plays a critical role in the assembly of multisubunit machines, including small nucleolar ribonucleoproteins (snoRNPs), RNA polymerase II, and the mTORC1 and SMG1 kinase complexes, but the molecular basis of substrate recognition remains unclear. Here, we describe a phosphopeptide binding domain (PIH-N) in the PIH1D1 subunit of the R2TP complex that preferentially binds to highly acidic phosphorylated proteins. A cocrystal structure of a PIH-N domain/TEL2 phosphopeptide complex reveals a highly specific phosphopeptide recognition mechanism in which Lys57 and 64 in PIH1D1, along with a conserved DpSDD phosphopeptide motif within TEL2, are essential and sufficient for binding. Proteomic analysis of PIH1D1 interactors identified R2TP complex substrates that are recruited by the PIH-N domain in a sequence-specific and phosphorylation-dependent manner suggestive of a common mechanism of substrate recognition. We propose that protein complexes assembled by the R2TP complex are defined by phosphorylation of a specific motif and recognition by the PIH1D1 subunit.
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spelling pubmed-39897772014-04-17 Phosphorylation-Dependent PIH1D1 Interactions Define Substrate Specificity of the R2TP Cochaperone Complex Hořejší, Zuzana Stach, Lasse Flower, Thomas G. Joshi, Dhira Flynn, Helen Skehel, J. Mark O’Reilly, Nicola J. Ogrodowicz, Roksana W. Smerdon, Stephen J. Boulton, Simon J. Cell Rep Report The R2TP cochaperone complex plays a critical role in the assembly of multisubunit machines, including small nucleolar ribonucleoproteins (snoRNPs), RNA polymerase II, and the mTORC1 and SMG1 kinase complexes, but the molecular basis of substrate recognition remains unclear. Here, we describe a phosphopeptide binding domain (PIH-N) in the PIH1D1 subunit of the R2TP complex that preferentially binds to highly acidic phosphorylated proteins. A cocrystal structure of a PIH-N domain/TEL2 phosphopeptide complex reveals a highly specific phosphopeptide recognition mechanism in which Lys57 and 64 in PIH1D1, along with a conserved DpSDD phosphopeptide motif within TEL2, are essential and sufficient for binding. Proteomic analysis of PIH1D1 interactors identified R2TP complex substrates that are recruited by the PIH-N domain in a sequence-specific and phosphorylation-dependent manner suggestive of a common mechanism of substrate recognition. We propose that protein complexes assembled by the R2TP complex are defined by phosphorylation of a specific motif and recognition by the PIH1D1 subunit. Cell Press 2014-03-20 /pmc/articles/PMC3989777/ /pubmed/24656813 http://dx.doi.org/10.1016/j.celrep.2014.03.013 Text en © 2014 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).
spellingShingle Report
Hořejší, Zuzana
Stach, Lasse
Flower, Thomas G.
Joshi, Dhira
Flynn, Helen
Skehel, J. Mark
O’Reilly, Nicola J.
Ogrodowicz, Roksana W.
Smerdon, Stephen J.
Boulton, Simon J.
Phosphorylation-Dependent PIH1D1 Interactions Define Substrate Specificity of the R2TP Cochaperone Complex
title Phosphorylation-Dependent PIH1D1 Interactions Define Substrate Specificity of the R2TP Cochaperone Complex
title_full Phosphorylation-Dependent PIH1D1 Interactions Define Substrate Specificity of the R2TP Cochaperone Complex
title_fullStr Phosphorylation-Dependent PIH1D1 Interactions Define Substrate Specificity of the R2TP Cochaperone Complex
title_full_unstemmed Phosphorylation-Dependent PIH1D1 Interactions Define Substrate Specificity of the R2TP Cochaperone Complex
title_short Phosphorylation-Dependent PIH1D1 Interactions Define Substrate Specificity of the R2TP Cochaperone Complex
title_sort phosphorylation-dependent pih1d1 interactions define substrate specificity of the r2tp cochaperone complex
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3989777/
https://www.ncbi.nlm.nih.gov/pubmed/24656813
http://dx.doi.org/10.1016/j.celrep.2014.03.013
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