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Intrinsically active variants of Erk oncogenically transform cells and disclose unexpected autophosphorylation capability that is independent of TEY phosphorylation

The receptor-tyrosine kinase (RTK)/Ras/Raf pathway is an essential cascade for mediating growth factor signaling. It is abnormally overactive in almost all human cancers. The downstream targets of the pathway are members of the extracellular regulated kinases (Erk1/2) family, suggesting that this fa...

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Autores principales: Smorodinsky-Atias, Karina, Goshen-Lago, Tal, Goldberg-Carp, Anat, Melamed, Dganit, Shir, Alexei, Mooshayef, Navit, Beenstock, Jonah, Karamansha, Yael, Darlyuk-Saadon, Ilona, Livnah, Oded, Ahn, Natalie G., Admon, Arie, Engelberg, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4791124/
https://www.ncbi.nlm.nih.gov/pubmed/26658610
http://dx.doi.org/10.1091/mbc.E15-07-0521
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author Smorodinsky-Atias, Karina
Goshen-Lago, Tal
Goldberg-Carp, Anat
Melamed, Dganit
Shir, Alexei
Mooshayef, Navit
Beenstock, Jonah
Karamansha, Yael
Darlyuk-Saadon, Ilona
Livnah, Oded
Ahn, Natalie G.
Admon, Arie
Engelberg, David
author_facet Smorodinsky-Atias, Karina
Goshen-Lago, Tal
Goldberg-Carp, Anat
Melamed, Dganit
Shir, Alexei
Mooshayef, Navit
Beenstock, Jonah
Karamansha, Yael
Darlyuk-Saadon, Ilona
Livnah, Oded
Ahn, Natalie G.
Admon, Arie
Engelberg, David
author_sort Smorodinsky-Atias, Karina
collection PubMed
description The receptor-tyrosine kinase (RTK)/Ras/Raf pathway is an essential cascade for mediating growth factor signaling. It is abnormally overactive in almost all human cancers. The downstream targets of the pathway are members of the extracellular regulated kinases (Erk1/2) family, suggesting that this family is a mediator of the oncogenic capability of the cascade. Although all oncogenic mutations in the pathway result in strong activation of Erks, activating mutations in Erks themselves were not reported in cancers. Here we used spontaneously active Erk variants to check whether Erk’s activity per se is sufficient for oncogenic transformation. We show that Erk1(R84S) is an oncoprotein, as NIH3T3 cells that express it form foci in tissue culture plates, colonies in soft agar, and tumors in nude mice. We further show that Erk1(R84S) and Erk2(R65S) are intrinsically active due to an unusual autophosphorylation activity they acquire. They autophosphorylate the activatory TEY motif and also other residues, including the critical residue Thr-207 (in Erk1)/Thr-188 (in Erk2). Strikingly, Erk2(R65S) efficiently autophosphorylates its Thr-188 even when dually mutated in the TEY motif. Thus this study shows that Erk1 can be considered a proto-oncogene and that Erk molecules possess unusual autoregulatory properties, some of them independent of TEY phosphorylation.
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spelling pubmed-47911242016-05-30 Intrinsically active variants of Erk oncogenically transform cells and disclose unexpected autophosphorylation capability that is independent of TEY phosphorylation Smorodinsky-Atias, Karina Goshen-Lago, Tal Goldberg-Carp, Anat Melamed, Dganit Shir, Alexei Mooshayef, Navit Beenstock, Jonah Karamansha, Yael Darlyuk-Saadon, Ilona Livnah, Oded Ahn, Natalie G. Admon, Arie Engelberg, David Mol Biol Cell Articles The receptor-tyrosine kinase (RTK)/Ras/Raf pathway is an essential cascade for mediating growth factor signaling. It is abnormally overactive in almost all human cancers. The downstream targets of the pathway are members of the extracellular regulated kinases (Erk1/2) family, suggesting that this family is a mediator of the oncogenic capability of the cascade. Although all oncogenic mutations in the pathway result in strong activation of Erks, activating mutations in Erks themselves were not reported in cancers. Here we used spontaneously active Erk variants to check whether Erk’s activity per se is sufficient for oncogenic transformation. We show that Erk1(R84S) is an oncoprotein, as NIH3T3 cells that express it form foci in tissue culture plates, colonies in soft agar, and tumors in nude mice. We further show that Erk1(R84S) and Erk2(R65S) are intrinsically active due to an unusual autophosphorylation activity they acquire. They autophosphorylate the activatory TEY motif and also other residues, including the critical residue Thr-207 (in Erk1)/Thr-188 (in Erk2). Strikingly, Erk2(R65S) efficiently autophosphorylates its Thr-188 even when dually mutated in the TEY motif. Thus this study shows that Erk1 can be considered a proto-oncogene and that Erk molecules possess unusual autoregulatory properties, some of them independent of TEY phosphorylation. The American Society for Cell Biology 2016-03-15 /pmc/articles/PMC4791124/ /pubmed/26658610 http://dx.doi.org/10.1091/mbc.E15-07-0521 Text en © 2016 Smorodinsky-Atias, Goshen-Lago, et al. This article is distributed by The American Society for Cell Biology under license from the author(s). Two months after publication it is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License (http://creativecommons.org/licenses/by-nc-sa/3.0). “ASCB®,” “The American Society for Cell Biology®,” and “Molecular Biology of the Cell®” are registered trademarks of The American Society for Cell Biology.
spellingShingle Articles
Smorodinsky-Atias, Karina
Goshen-Lago, Tal
Goldberg-Carp, Anat
Melamed, Dganit
Shir, Alexei
Mooshayef, Navit
Beenstock, Jonah
Karamansha, Yael
Darlyuk-Saadon, Ilona
Livnah, Oded
Ahn, Natalie G.
Admon, Arie
Engelberg, David
Intrinsically active variants of Erk oncogenically transform cells and disclose unexpected autophosphorylation capability that is independent of TEY phosphorylation
title Intrinsically active variants of Erk oncogenically transform cells and disclose unexpected autophosphorylation capability that is independent of TEY phosphorylation
title_full Intrinsically active variants of Erk oncogenically transform cells and disclose unexpected autophosphorylation capability that is independent of TEY phosphorylation
title_fullStr Intrinsically active variants of Erk oncogenically transform cells and disclose unexpected autophosphorylation capability that is independent of TEY phosphorylation
title_full_unstemmed Intrinsically active variants of Erk oncogenically transform cells and disclose unexpected autophosphorylation capability that is independent of TEY phosphorylation
title_short Intrinsically active variants of Erk oncogenically transform cells and disclose unexpected autophosphorylation capability that is independent of TEY phosphorylation
title_sort intrinsically active variants of erk oncogenically transform cells and disclose unexpected autophosphorylation capability that is independent of tey phosphorylation
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4791124/
https://www.ncbi.nlm.nih.gov/pubmed/26658610
http://dx.doi.org/10.1091/mbc.E15-07-0521
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