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Critical role of phosphorylation of serine 165 of YBX1 on the activation of NF-κB in colon cancer

Y-box binding protein 1 [YBX1] is a multifunctional protein known to facilitate many of the hallmarks of cancer. Elevated levels of YBX1 protein are highly correlated with cancer progression, making it an excellent marker in cancer. The connection between YBX1 and the important nuclear factor κB [NF...

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Autores principales: Prabhu, Lakshmi, Mundade, Rasika, Wang, Benlian, Wei, Han, Hartley, Antja-Voy, Martin, Matthew, McElyea, Kyle, Temm, Constance J., Sandusky, George, Liu, Yunlong, Lu, Tao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4745735/
https://www.ncbi.nlm.nih.gov/pubmed/26318844
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author Prabhu, Lakshmi
Mundade, Rasika
Wang, Benlian
Wei, Han
Hartley, Antja-Voy
Martin, Matthew
McElyea, Kyle
Temm, Constance J.
Sandusky, George
Liu, Yunlong
Lu, Tao
author_facet Prabhu, Lakshmi
Mundade, Rasika
Wang, Benlian
Wei, Han
Hartley, Antja-Voy
Martin, Matthew
McElyea, Kyle
Temm, Constance J.
Sandusky, George
Liu, Yunlong
Lu, Tao
author_sort Prabhu, Lakshmi
collection PubMed
description Y-box binding protein 1 [YBX1] is a multifunctional protein known to facilitate many of the hallmarks of cancer. Elevated levels of YBX1 protein are highly correlated with cancer progression, making it an excellent marker in cancer. The connection between YBX1 and the important nuclear factor κB [NF-κB] has never been reported. Here, we show that overexpression of wild type YBX1 [WT-YBX1] activates NF-κB, suggesting that YBX1 is a potential NF-κB activator. Furthermore, using mass spectrometry analysis we identified novel phosphorylation of serine 165 [S165] on YBX1. Overexpression of the S165A-YBX1 mutant in either HEK293 cells or colon cancer HT29 cells showed dramatically reduced NF-κB activating ability as compared with that of WT-YBX1, confirming that S165 phosphorylation is critical for the activation of NF-κB by YBX1. We also show that expression of the S165A-YBX1 mutant dramatically decreased the expression of NF-κB-inducible genes, reduced cell growth, and compromised tumorigenic ability as compared with WT-YBX1. Taken together, we provide the first evidence that YBX1 functions as a tumor promoter via NF-κB activation, and phosphorylation of S165 of YBX1 is critical for this function. Therefore, our important discovery may lead to blocking S165 phosphorylation as a potential therapeutic strategy to treat colon cancer.
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spelling pubmed-47457352016-02-23 Critical role of phosphorylation of serine 165 of YBX1 on the activation of NF-κB in colon cancer Prabhu, Lakshmi Mundade, Rasika Wang, Benlian Wei, Han Hartley, Antja-Voy Martin, Matthew McElyea, Kyle Temm, Constance J. Sandusky, George Liu, Yunlong Lu, Tao Oncotarget Research Paper Y-box binding protein 1 [YBX1] is a multifunctional protein known to facilitate many of the hallmarks of cancer. Elevated levels of YBX1 protein are highly correlated with cancer progression, making it an excellent marker in cancer. The connection between YBX1 and the important nuclear factor κB [NF-κB] has never been reported. Here, we show that overexpression of wild type YBX1 [WT-YBX1] activates NF-κB, suggesting that YBX1 is a potential NF-κB activator. Furthermore, using mass spectrometry analysis we identified novel phosphorylation of serine 165 [S165] on YBX1. Overexpression of the S165A-YBX1 mutant in either HEK293 cells or colon cancer HT29 cells showed dramatically reduced NF-κB activating ability as compared with that of WT-YBX1, confirming that S165 phosphorylation is critical for the activation of NF-κB by YBX1. We also show that expression of the S165A-YBX1 mutant dramatically decreased the expression of NF-κB-inducible genes, reduced cell growth, and compromised tumorigenic ability as compared with WT-YBX1. Taken together, we provide the first evidence that YBX1 functions as a tumor promoter via NF-κB activation, and phosphorylation of S165 of YBX1 is critical for this function. Therefore, our important discovery may lead to blocking S165 phosphorylation as a potential therapeutic strategy to treat colon cancer. Impact Journals LLC 2015-08-08 /pmc/articles/PMC4745735/ /pubmed/26318844 Text en Copyright: © 2015 Prabhu 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
Prabhu, Lakshmi
Mundade, Rasika
Wang, Benlian
Wei, Han
Hartley, Antja-Voy
Martin, Matthew
McElyea, Kyle
Temm, Constance J.
Sandusky, George
Liu, Yunlong
Lu, Tao
Critical role of phosphorylation of serine 165 of YBX1 on the activation of NF-κB in colon cancer
title Critical role of phosphorylation of serine 165 of YBX1 on the activation of NF-κB in colon cancer
title_full Critical role of phosphorylation of serine 165 of YBX1 on the activation of NF-κB in colon cancer
title_fullStr Critical role of phosphorylation of serine 165 of YBX1 on the activation of NF-κB in colon cancer
title_full_unstemmed Critical role of phosphorylation of serine 165 of YBX1 on the activation of NF-κB in colon cancer
title_short Critical role of phosphorylation of serine 165 of YBX1 on the activation of NF-κB in colon cancer
title_sort critical role of phosphorylation of serine 165 of ybx1 on the activation of nf-κb in colon cancer
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4745735/
https://www.ncbi.nlm.nih.gov/pubmed/26318844
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