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Proteomic Phosphosite Analysis Identified Crucial NPM-ALK-Mediated NIPA Serine and Threonine Residues

Anaplastic large-cell lymphoma (ALCL) is an aggressive non-Hodgkin lymphoma that shows in 60% of cases a translocation t(2;5)(p23;q35), which leads to the expression of the oncogenic kinase NPM-ALK. The nuclear interaction partner of ALK (NIPA) defines an E3-SCF ligase that contributes to the timing...

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Autores principales: Gengenbacher, Anina, Müller-Rudorf, Alina, Poggio, Teresa, Gräßel, Linda, Dumit, Veronica I., Kreutmair, Stefanie, Lippert, Lena J., Duyster, Justus, Illert, Anna L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6721280/
https://www.ncbi.nlm.nih.gov/pubmed/31434245
http://dx.doi.org/10.3390/ijms20164060
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author Gengenbacher, Anina
Müller-Rudorf, Alina
Poggio, Teresa
Gräßel, Linda
Dumit, Veronica I.
Kreutmair, Stefanie
Lippert, Lena J.
Duyster, Justus
Illert, Anna L.
author_facet Gengenbacher, Anina
Müller-Rudorf, Alina
Poggio, Teresa
Gräßel, Linda
Dumit, Veronica I.
Kreutmair, Stefanie
Lippert, Lena J.
Duyster, Justus
Illert, Anna L.
author_sort Gengenbacher, Anina
collection PubMed
description Anaplastic large-cell lymphoma (ALCL) is an aggressive non-Hodgkin lymphoma that shows in 60% of cases a translocation t(2;5)(p23;q35), which leads to the expression of the oncogenic kinase NPM-ALK. The nuclear interaction partner of ALK (NIPA) defines an E3-SCF ligase that contributes to the timing of mitotic entry. It has been shown that co-expression of NIPA and NPM-ALK results in constitutive NIPA phosphorylation. By mass spectrometry-based proteomics we identified nine serine/threonine residues to be significantly upregulated in NIPA upon NPM-ALK expression. Generation of phospho-deficient mutants of the respective phospho-residues specified five serine/threonine residues (Ser-338, Ser-344, Ser-370, Ser-381 and Thr-387) as key phosphorylation sites involved in NPM-ALK-directed phosphorylation of NIPA. Analysis of the biological impact of NIPA phosphorylation by NPM-ALK demonstrated that the ALK-induced phosphorylation does not change the SCF(NIPA)-complex formation but may influence the localization of NIPA and NPM-ALK. Biochemical analyses with phospho-deficient mutants elucidated the importance of NIPA phosphorylation by NPM-ALK for the interaction of the two proteins and proliferation potential of respective cells: Silencing of the five crucial NIPA serine/threonine residues led to a highly enhanced NIPA-NPM-ALK binding capacity as well as a slightly reduced proliferation in Ba/F3 cells.
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spelling pubmed-67212802019-09-10 Proteomic Phosphosite Analysis Identified Crucial NPM-ALK-Mediated NIPA Serine and Threonine Residues Gengenbacher, Anina Müller-Rudorf, Alina Poggio, Teresa Gräßel, Linda Dumit, Veronica I. Kreutmair, Stefanie Lippert, Lena J. Duyster, Justus Illert, Anna L. Int J Mol Sci Article Anaplastic large-cell lymphoma (ALCL) is an aggressive non-Hodgkin lymphoma that shows in 60% of cases a translocation t(2;5)(p23;q35), which leads to the expression of the oncogenic kinase NPM-ALK. The nuclear interaction partner of ALK (NIPA) defines an E3-SCF ligase that contributes to the timing of mitotic entry. It has been shown that co-expression of NIPA and NPM-ALK results in constitutive NIPA phosphorylation. By mass spectrometry-based proteomics we identified nine serine/threonine residues to be significantly upregulated in NIPA upon NPM-ALK expression. Generation of phospho-deficient mutants of the respective phospho-residues specified five serine/threonine residues (Ser-338, Ser-344, Ser-370, Ser-381 and Thr-387) as key phosphorylation sites involved in NPM-ALK-directed phosphorylation of NIPA. Analysis of the biological impact of NIPA phosphorylation by NPM-ALK demonstrated that the ALK-induced phosphorylation does not change the SCF(NIPA)-complex formation but may influence the localization of NIPA and NPM-ALK. Biochemical analyses with phospho-deficient mutants elucidated the importance of NIPA phosphorylation by NPM-ALK for the interaction of the two proteins and proliferation potential of respective cells: Silencing of the five crucial NIPA serine/threonine residues led to a highly enhanced NIPA-NPM-ALK binding capacity as well as a slightly reduced proliferation in Ba/F3 cells. MDPI 2019-08-20 /pmc/articles/PMC6721280/ /pubmed/31434245 http://dx.doi.org/10.3390/ijms20164060 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gengenbacher, Anina
Müller-Rudorf, Alina
Poggio, Teresa
Gräßel, Linda
Dumit, Veronica I.
Kreutmair, Stefanie
Lippert, Lena J.
Duyster, Justus
Illert, Anna L.
Proteomic Phosphosite Analysis Identified Crucial NPM-ALK-Mediated NIPA Serine and Threonine Residues
title Proteomic Phosphosite Analysis Identified Crucial NPM-ALK-Mediated NIPA Serine and Threonine Residues
title_full Proteomic Phosphosite Analysis Identified Crucial NPM-ALK-Mediated NIPA Serine and Threonine Residues
title_fullStr Proteomic Phosphosite Analysis Identified Crucial NPM-ALK-Mediated NIPA Serine and Threonine Residues
title_full_unstemmed Proteomic Phosphosite Analysis Identified Crucial NPM-ALK-Mediated NIPA Serine and Threonine Residues
title_short Proteomic Phosphosite Analysis Identified Crucial NPM-ALK-Mediated NIPA Serine and Threonine Residues
title_sort proteomic phosphosite analysis identified crucial npm-alk-mediated nipa serine and threonine residues
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6721280/
https://www.ncbi.nlm.nih.gov/pubmed/31434245
http://dx.doi.org/10.3390/ijms20164060
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