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Phospho-proteomic analyses of B-Raf protein complexes reveal new regulatory principles

B-Raf represents a critical physiological regulator of the Ras/RAF/MEK/ERK-pathway and a pharmacological target of growing clinical relevance, in particular in oncology. To understand how B-Raf itself is regulated, we combined mass spectrometry with genetic approaches to map its interactome in MCF-1...

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Autores principales: Eisenhardt, Anja E., Sprenger, Adrian, Röring, Michael, Herr, Ricarda, Weinberg, Florian, Köhler, Martin, Braun, Sandra, Orth, Joachim, Diedrich, Britta, Lanner, Ulrike, Tscherwinski, Natalja, Schuster, Simon, Dumaz, Nicolas, Schmidt, Enrico, Baumeister, Ralf, Schlosser, Andreas, Dengjel, Jörn, Brummer, Tilman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5042004/
https://www.ncbi.nlm.nih.gov/pubmed/27034005
http://dx.doi.org/10.18632/oncotarget.8427
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author Eisenhardt, Anja E.
Sprenger, Adrian
Röring, Michael
Herr, Ricarda
Weinberg, Florian
Köhler, Martin
Braun, Sandra
Orth, Joachim
Diedrich, Britta
Lanner, Ulrike
Tscherwinski, Natalja
Schuster, Simon
Dumaz, Nicolas
Schmidt, Enrico
Baumeister, Ralf
Schlosser, Andreas
Dengjel, Jörn
Brummer, Tilman
author_facet Eisenhardt, Anja E.
Sprenger, Adrian
Röring, Michael
Herr, Ricarda
Weinberg, Florian
Köhler, Martin
Braun, Sandra
Orth, Joachim
Diedrich, Britta
Lanner, Ulrike
Tscherwinski, Natalja
Schuster, Simon
Dumaz, Nicolas
Schmidt, Enrico
Baumeister, Ralf
Schlosser, Andreas
Dengjel, Jörn
Brummer, Tilman
author_sort Eisenhardt, Anja E.
collection PubMed
description B-Raf represents a critical physiological regulator of the Ras/RAF/MEK/ERK-pathway and a pharmacological target of growing clinical relevance, in particular in oncology. To understand how B-Raf itself is regulated, we combined mass spectrometry with genetic approaches to map its interactome in MCF-10A cells as well as in B-Raf deficient murine embryonic fibroblasts (MEFs) and B-Raf/Raf-1 double deficient DT40 lymphoma cells complemented with wildtype or mutant B-Raf expression vectors. Using a multi-protease digestion approach, we identified a novel ubiquitination site and provide a detailed B-Raf phospho-map. Importantly, we identify two evolutionary conserved phosphorylation clusters around T401 and S419 in the B-Raf hinge region. SILAC labelling and genetic/biochemical follow-up revealed that these clusters are phosphorylated in the contexts of oncogenic Ras, sorafenib induced Raf dimerization and in the background of the V600E mutation. We further show that the vemurafenib sensitive phosphorylation of the T401 cluster occurs in trans within a Raf dimer. Substitution of the Ser/Thr-residues of this cluster by alanine residues enhances the transforming potential of B-Raf, indicating that these phosphorylation sites suppress its signaling output. Moreover, several B-Raf phosphorylation sites, including T401 and S419, are somatically mutated in tumors, further illustrating the importance of phosphorylation for the regulation of this kinase.
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spelling pubmed-50420042016-10-10 Phospho-proteomic analyses of B-Raf protein complexes reveal new regulatory principles Eisenhardt, Anja E. Sprenger, Adrian Röring, Michael Herr, Ricarda Weinberg, Florian Köhler, Martin Braun, Sandra Orth, Joachim Diedrich, Britta Lanner, Ulrike Tscherwinski, Natalja Schuster, Simon Dumaz, Nicolas Schmidt, Enrico Baumeister, Ralf Schlosser, Andreas Dengjel, Jörn Brummer, Tilman Oncotarget Research Paper B-Raf represents a critical physiological regulator of the Ras/RAF/MEK/ERK-pathway and a pharmacological target of growing clinical relevance, in particular in oncology. To understand how B-Raf itself is regulated, we combined mass spectrometry with genetic approaches to map its interactome in MCF-10A cells as well as in B-Raf deficient murine embryonic fibroblasts (MEFs) and B-Raf/Raf-1 double deficient DT40 lymphoma cells complemented with wildtype or mutant B-Raf expression vectors. Using a multi-protease digestion approach, we identified a novel ubiquitination site and provide a detailed B-Raf phospho-map. Importantly, we identify two evolutionary conserved phosphorylation clusters around T401 and S419 in the B-Raf hinge region. SILAC labelling and genetic/biochemical follow-up revealed that these clusters are phosphorylated in the contexts of oncogenic Ras, sorafenib induced Raf dimerization and in the background of the V600E mutation. We further show that the vemurafenib sensitive phosphorylation of the T401 cluster occurs in trans within a Raf dimer. Substitution of the Ser/Thr-residues of this cluster by alanine residues enhances the transforming potential of B-Raf, indicating that these phosphorylation sites suppress its signaling output. Moreover, several B-Raf phosphorylation sites, including T401 and S419, are somatically mutated in tumors, further illustrating the importance of phosphorylation for the regulation of this kinase. Impact Journals LLC 2016-03-28 /pmc/articles/PMC5042004/ /pubmed/27034005 http://dx.doi.org/10.18632/oncotarget.8427 Text en Copyright: © 2016 Eisenhardt et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Eisenhardt, Anja E.
Sprenger, Adrian
Röring, Michael
Herr, Ricarda
Weinberg, Florian
Köhler, Martin
Braun, Sandra
Orth, Joachim
Diedrich, Britta
Lanner, Ulrike
Tscherwinski, Natalja
Schuster, Simon
Dumaz, Nicolas
Schmidt, Enrico
Baumeister, Ralf
Schlosser, Andreas
Dengjel, Jörn
Brummer, Tilman
Phospho-proteomic analyses of B-Raf protein complexes reveal new regulatory principles
title Phospho-proteomic analyses of B-Raf protein complexes reveal new regulatory principles
title_full Phospho-proteomic analyses of B-Raf protein complexes reveal new regulatory principles
title_fullStr Phospho-proteomic analyses of B-Raf protein complexes reveal new regulatory principles
title_full_unstemmed Phospho-proteomic analyses of B-Raf protein complexes reveal new regulatory principles
title_short Phospho-proteomic analyses of B-Raf protein complexes reveal new regulatory principles
title_sort phospho-proteomic analyses of b-raf protein complexes reveal new regulatory principles
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5042004/
https://www.ncbi.nlm.nih.gov/pubmed/27034005
http://dx.doi.org/10.18632/oncotarget.8427
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