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Protein phosphatase Mg2+/Mn2+ dependent 1F promotes smoking-induced breast cancer by inactivating phosphorylated-p53-induced signals

We previously demonstrated that the activation of α9-nicotinic acetylcholine receptor (α9-nAchR) signaling by smoking promotes breast cancer formation. To investigate the downstream signaling molecules involved in α9-nAChR-induced breast tumorigenesis, we used real-time polymerase chain reactions an...

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Autores principales: Tu, Shih-Hsin, Lin, Yin-Ching, Huang, Chi-Cheng, Yang, Po-Sheng, Chang, Hui-Wen, Chang, Chien-Hsi, Wu, Chih-Hsiung, Chen, Li-Ching, Ho, Yuan-Soon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5363601/
https://www.ncbi.nlm.nih.gov/pubmed/27769050
http://dx.doi.org/10.18632/oncotarget.12717
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author Tu, Shih-Hsin
Lin, Yin-Ching
Huang, Chi-Cheng
Yang, Po-Sheng
Chang, Hui-Wen
Chang, Chien-Hsi
Wu, Chih-Hsiung
Chen, Li-Ching
Ho, Yuan-Soon
author_facet Tu, Shih-Hsin
Lin, Yin-Ching
Huang, Chi-Cheng
Yang, Po-Sheng
Chang, Hui-Wen
Chang, Chien-Hsi
Wu, Chih-Hsiung
Chen, Li-Ching
Ho, Yuan-Soon
author_sort Tu, Shih-Hsin
collection PubMed
description We previously demonstrated that the activation of α9-nicotinic acetylcholine receptor (α9-nAchR) signaling by smoking promotes breast cancer formation. To investigate the downstream signaling molecules involved in α9-nAChR-induced breast tumorigenesis, we used real-time polymerase chain reactions and Western blotting to assess expression of protein phosphatase Mg(2+)/Mn(2+) dependent 1F (PPM1F), a Ser/Thr protein phosphatase, in human breast cancer samples (n=167). Additionally, stable PPM1F-knockdown and -overexpressing cell lines were established to evaluate the function of PPM1F. The phosphatase activity of PPM1F in nicotine-treated cells was assessed through Western blotting, confocal microscopy, and fluorescence resonance energy transfer. Higher levels of PPM1F were detected in the breast cancer tissues of heavy smokers (n=7, 12.8-fold) greater than of non-smokers (n= 28, 6.3-fold) (**p=0.01). In vitro, nicotine induced PPM1F expression, whereas α9-nAChR knockdown reduced the protein expression of PPM1F. A series of biochemical experiments using nicotine-treated cells suggested that the dephosphorylation of p53 (Ser-20) and BAX (Ser-184) by PPM1F is a critical posttranslational modification, as observed in breast cancer patients who were heavy smokers. These observations indicate that PPM1F may be a mediator downstream of α9-nAChR that activates smoking-induced carcinogenic signals. Thus, PPM1F expression could be used for prognostic diagnosis or inhibited for cancer prevention and therapy.
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spelling pubmed-53636012017-03-29 Protein phosphatase Mg2+/Mn2+ dependent 1F promotes smoking-induced breast cancer by inactivating phosphorylated-p53-induced signals Tu, Shih-Hsin Lin, Yin-Ching Huang, Chi-Cheng Yang, Po-Sheng Chang, Hui-Wen Chang, Chien-Hsi Wu, Chih-Hsiung Chen, Li-Ching Ho, Yuan-Soon Oncotarget Research Paper We previously demonstrated that the activation of α9-nicotinic acetylcholine receptor (α9-nAchR) signaling by smoking promotes breast cancer formation. To investigate the downstream signaling molecules involved in α9-nAChR-induced breast tumorigenesis, we used real-time polymerase chain reactions and Western blotting to assess expression of protein phosphatase Mg(2+)/Mn(2+) dependent 1F (PPM1F), a Ser/Thr protein phosphatase, in human breast cancer samples (n=167). Additionally, stable PPM1F-knockdown and -overexpressing cell lines were established to evaluate the function of PPM1F. The phosphatase activity of PPM1F in nicotine-treated cells was assessed through Western blotting, confocal microscopy, and fluorescence resonance energy transfer. Higher levels of PPM1F were detected in the breast cancer tissues of heavy smokers (n=7, 12.8-fold) greater than of non-smokers (n= 28, 6.3-fold) (**p=0.01). In vitro, nicotine induced PPM1F expression, whereas α9-nAChR knockdown reduced the protein expression of PPM1F. A series of biochemical experiments using nicotine-treated cells suggested that the dephosphorylation of p53 (Ser-20) and BAX (Ser-184) by PPM1F is a critical posttranslational modification, as observed in breast cancer patients who were heavy smokers. These observations indicate that PPM1F may be a mediator downstream of α9-nAChR that activates smoking-induced carcinogenic signals. Thus, PPM1F expression could be used for prognostic diagnosis or inhibited for cancer prevention and therapy. Impact Journals LLC 2016-10-18 /pmc/articles/PMC5363601/ /pubmed/27769050 http://dx.doi.org/10.18632/oncotarget.12717 Text en Copyright: © 2016 Tu et al. http://creativecommons.org/licenses/by/3.0/ 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
Tu, Shih-Hsin
Lin, Yin-Ching
Huang, Chi-Cheng
Yang, Po-Sheng
Chang, Hui-Wen
Chang, Chien-Hsi
Wu, Chih-Hsiung
Chen, Li-Ching
Ho, Yuan-Soon
Protein phosphatase Mg2+/Mn2+ dependent 1F promotes smoking-induced breast cancer by inactivating phosphorylated-p53-induced signals
title Protein phosphatase Mg2+/Mn2+ dependent 1F promotes smoking-induced breast cancer by inactivating phosphorylated-p53-induced signals
title_full Protein phosphatase Mg2+/Mn2+ dependent 1F promotes smoking-induced breast cancer by inactivating phosphorylated-p53-induced signals
title_fullStr Protein phosphatase Mg2+/Mn2+ dependent 1F promotes smoking-induced breast cancer by inactivating phosphorylated-p53-induced signals
title_full_unstemmed Protein phosphatase Mg2+/Mn2+ dependent 1F promotes smoking-induced breast cancer by inactivating phosphorylated-p53-induced signals
title_short Protein phosphatase Mg2+/Mn2+ dependent 1F promotes smoking-induced breast cancer by inactivating phosphorylated-p53-induced signals
title_sort protein phosphatase mg2+/mn2+ dependent 1f promotes smoking-induced breast cancer by inactivating phosphorylated-p53-induced signals
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5363601/
https://www.ncbi.nlm.nih.gov/pubmed/27769050
http://dx.doi.org/10.18632/oncotarget.12717
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