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Phosphoproteomics reveals extensive in vivo phosphorylation of Arabidopsis proteins involved in RNA metabolism

Most regulatory pathways are governed by the reversible phosphorylation of proteins. Recent developments in mass spectrometry-based technology allow the large-scale analysis of protein phosphorylation. Here, we show the application of immobilized metal affinity chromatography to purify phosphopeptid...

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Autores principales: la Fuente van Bentem, Sergio de, Anrather, Dorothea, Roitinger, Elisabeth, Djamei, Armin, Hufnagl, Thomas, Barta, Andrea, Csaszar, Edina, Dohnal, Ilse, Lecourieux, David, Hirt, Heribert
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1904105/
https://www.ncbi.nlm.nih.gov/pubmed/16807317
http://dx.doi.org/10.1093/nar/gkl429
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author la Fuente van Bentem, Sergio de
Anrather, Dorothea
Roitinger, Elisabeth
Djamei, Armin
Hufnagl, Thomas
Barta, Andrea
Csaszar, Edina
Dohnal, Ilse
Lecourieux, David
Hirt, Heribert
author_facet la Fuente van Bentem, Sergio de
Anrather, Dorothea
Roitinger, Elisabeth
Djamei, Armin
Hufnagl, Thomas
Barta, Andrea
Csaszar, Edina
Dohnal, Ilse
Lecourieux, David
Hirt, Heribert
author_sort la Fuente van Bentem, Sergio de
collection PubMed
description Most regulatory pathways are governed by the reversible phosphorylation of proteins. Recent developments in mass spectrometry-based technology allow the large-scale analysis of protein phosphorylation. Here, we show the application of immobilized metal affinity chromatography to purify phosphopeptides from Arabidopsis extracts. Phosphopeptide sequences were identified by liquid chromatography-tandem mass spectrometry (LC-MS/MS/MS). A total of 79 unique phosphorylation sites were determined in 22 phosphoproteins with a putative role in RNA metabolism, including splicing of mRNAs. Among these phosphoproteins, 12 Ser/Arg-rich (SR) splicing factors were identified. A conserved phosphorylation site was found in most of the phosphoproteins, including the SR proteins, suggesting that these proteins are targeted by the same or a highly related protein kinase. To test this hypothesis, Arabidopsis SR protein-specific kinase 4 (SRPK4) that was initially identified as an interactor of SR proteins was tested for its ability to phosphorylate the SR protein RSp31. In vitro kinase assays showed that all in vivo phosphorylation sites of RSp31 were targeted by SRPK4. These data suggest that the plant mRNA splicing machinery is a major target of phosphorylation and that a considerable number of proteins involved in RNA metabolism may be targeted by SRPKs.
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spelling pubmed-19041052007-06-28 Phosphoproteomics reveals extensive in vivo phosphorylation of Arabidopsis proteins involved in RNA metabolism la Fuente van Bentem, Sergio de Anrather, Dorothea Roitinger, Elisabeth Djamei, Armin Hufnagl, Thomas Barta, Andrea Csaszar, Edina Dohnal, Ilse Lecourieux, David Hirt, Heribert Nucleic Acids Res Article Most regulatory pathways are governed by the reversible phosphorylation of proteins. Recent developments in mass spectrometry-based technology allow the large-scale analysis of protein phosphorylation. Here, we show the application of immobilized metal affinity chromatography to purify phosphopeptides from Arabidopsis extracts. Phosphopeptide sequences were identified by liquid chromatography-tandem mass spectrometry (LC-MS/MS/MS). A total of 79 unique phosphorylation sites were determined in 22 phosphoproteins with a putative role in RNA metabolism, including splicing of mRNAs. Among these phosphoproteins, 12 Ser/Arg-rich (SR) splicing factors were identified. A conserved phosphorylation site was found in most of the phosphoproteins, including the SR proteins, suggesting that these proteins are targeted by the same or a highly related protein kinase. To test this hypothesis, Arabidopsis SR protein-specific kinase 4 (SRPK4) that was initially identified as an interactor of SR proteins was tested for its ability to phosphorylate the SR protein RSp31. In vitro kinase assays showed that all in vivo phosphorylation sites of RSp31 were targeted by SRPK4. These data suggest that the plant mRNA splicing machinery is a major target of phosphorylation and that a considerable number of proteins involved in RNA metabolism may be targeted by SRPKs. Oxford University Press 2006 2006-07-17 /pmc/articles/PMC1904105/ /pubmed/16807317 http://dx.doi.org/10.1093/nar/gkl429 Text en © 2006 The Author(s)
spellingShingle Article
la Fuente van Bentem, Sergio de
Anrather, Dorothea
Roitinger, Elisabeth
Djamei, Armin
Hufnagl, Thomas
Barta, Andrea
Csaszar, Edina
Dohnal, Ilse
Lecourieux, David
Hirt, Heribert
Phosphoproteomics reveals extensive in vivo phosphorylation of Arabidopsis proteins involved in RNA metabolism
title Phosphoproteomics reveals extensive in vivo phosphorylation of Arabidopsis proteins involved in RNA metabolism
title_full Phosphoproteomics reveals extensive in vivo phosphorylation of Arabidopsis proteins involved in RNA metabolism
title_fullStr Phosphoproteomics reveals extensive in vivo phosphorylation of Arabidopsis proteins involved in RNA metabolism
title_full_unstemmed Phosphoproteomics reveals extensive in vivo phosphorylation of Arabidopsis proteins involved in RNA metabolism
title_short Phosphoproteomics reveals extensive in vivo phosphorylation of Arabidopsis proteins involved in RNA metabolism
title_sort phosphoproteomics reveals extensive in vivo phosphorylation of arabidopsis proteins involved in rna metabolism
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1904105/
https://www.ncbi.nlm.nih.gov/pubmed/16807317
http://dx.doi.org/10.1093/nar/gkl429
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