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Quantitative proteomic analysis for radiation-induced cell cycle suspension in 92-1 melanoma cell line

Melanoma is a malignant tumor with high invasive and metastatic properties. Though radiation is the major therapy for melanoma, its radio-resistance has been shown to severely influence the clinical outcome. So it is imperative to enhance the sensitivity of uveal melanoma cells to radiotherapy. Prev...

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Autores principales: Wang, Fengling, Bing, Zhitong, Zhang, Yanan, Ao, Bin, Zhang, Sheng, Ye, Caiyong, He, Jinpeng, Ding, Nan, Ye, Wenling, Xiong, Jie, Sun, Jintu, Furusawa, Yoshiya, Zhou, Guangming, Yang, Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3709680/
https://www.ncbi.nlm.nih.gov/pubmed/23447694
http://dx.doi.org/10.1093/jrr/rrt010
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author Wang, Fengling
Bing, Zhitong
Zhang, Yanan
Ao, Bin
Zhang, Sheng
Ye, Caiyong
He, Jinpeng
Ding, Nan
Ye, Wenling
Xiong, Jie
Sun, Jintu
Furusawa, Yoshiya
Zhou, Guangming
Yang, Lei
author_facet Wang, Fengling
Bing, Zhitong
Zhang, Yanan
Ao, Bin
Zhang, Sheng
Ye, Caiyong
He, Jinpeng
Ding, Nan
Ye, Wenling
Xiong, Jie
Sun, Jintu
Furusawa, Yoshiya
Zhou, Guangming
Yang, Lei
author_sort Wang, Fengling
collection PubMed
description Melanoma is a malignant tumor with high invasive and metastatic properties. Though radiation is the major therapy for melanoma, its radio-resistance has been shown to severely influence the clinical outcome. So it is imperative to enhance the sensitivity of uveal melanoma cells to radiotherapy. Previously, we found that the cell cycle of 92-1 uveal melanoma cells was suspended and remained unchanged for up to 5 days after exposure to 10 Gy of X-rays, which might be relevant to the high radio-sensitivity of 92-1 cells. To further investigate the cell cycle suspension-associated proteins, we employed two analyses with stable isotope labeling with amino acids in cell culture technology and two-dimensional liquid chromatography tandem mass spectrometry. Cells were incubated for 15 h or 48 h after irradiation with 10 Gy of X-rays. We identified a total of 737 proteins at 15 h (Group A) and 530 proteins at 48 h post-irradiation (Group B). The gene ontology biological pathway was used to obtain a systems level view of proteome changes in 92-1cells under cell cycle suspension. We further selected the significantly changed proteins for investigation of their potential contribution to cell cycle suspension, growth arrest and cell senescence. These proteins are involved in the cell cycle, stress response, glycolysis and the tricarboxylic acid cycle, etc. Our study expected to reveal potential marker proteins associated with cell suspension induced by irradiation, which might contribute to understanding the mechanism beyond the cell cycle suspension.
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spelling pubmed-37096802013-07-15 Quantitative proteomic analysis for radiation-induced cell cycle suspension in 92-1 melanoma cell line Wang, Fengling Bing, Zhitong Zhang, Yanan Ao, Bin Zhang, Sheng Ye, Caiyong He, Jinpeng Ding, Nan Ye, Wenling Xiong, Jie Sun, Jintu Furusawa, Yoshiya Zhou, Guangming Yang, Lei J Radiat Res Biology Melanoma is a malignant tumor with high invasive and metastatic properties. Though radiation is the major therapy for melanoma, its radio-resistance has been shown to severely influence the clinical outcome. So it is imperative to enhance the sensitivity of uveal melanoma cells to radiotherapy. Previously, we found that the cell cycle of 92-1 uveal melanoma cells was suspended and remained unchanged for up to 5 days after exposure to 10 Gy of X-rays, which might be relevant to the high radio-sensitivity of 92-1 cells. To further investigate the cell cycle suspension-associated proteins, we employed two analyses with stable isotope labeling with amino acids in cell culture technology and two-dimensional liquid chromatography tandem mass spectrometry. Cells were incubated for 15 h or 48 h after irradiation with 10 Gy of X-rays. We identified a total of 737 proteins at 15 h (Group A) and 530 proteins at 48 h post-irradiation (Group B). The gene ontology biological pathway was used to obtain a systems level view of proteome changes in 92-1cells under cell cycle suspension. We further selected the significantly changed proteins for investigation of their potential contribution to cell cycle suspension, growth arrest and cell senescence. These proteins are involved in the cell cycle, stress response, glycolysis and the tricarboxylic acid cycle, etc. Our study expected to reveal potential marker proteins associated with cell suspension induced by irradiation, which might contribute to understanding the mechanism beyond the cell cycle suspension. Oxford University Press 2013-07 2013-02-26 /pmc/articles/PMC3709680/ /pubmed/23447694 http://dx.doi.org/10.1093/jrr/rrt010 Text en © The Author 2013. Published by Oxford University Press on behalf of The Japan Radiation Research Society and Japanese Society for Therapeutic Radiology and Oncology. http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Biology
Wang, Fengling
Bing, Zhitong
Zhang, Yanan
Ao, Bin
Zhang, Sheng
Ye, Caiyong
He, Jinpeng
Ding, Nan
Ye, Wenling
Xiong, Jie
Sun, Jintu
Furusawa, Yoshiya
Zhou, Guangming
Yang, Lei
Quantitative proteomic analysis for radiation-induced cell cycle suspension in 92-1 melanoma cell line
title Quantitative proteomic analysis for radiation-induced cell cycle suspension in 92-1 melanoma cell line
title_full Quantitative proteomic analysis for radiation-induced cell cycle suspension in 92-1 melanoma cell line
title_fullStr Quantitative proteomic analysis for radiation-induced cell cycle suspension in 92-1 melanoma cell line
title_full_unstemmed Quantitative proteomic analysis for radiation-induced cell cycle suspension in 92-1 melanoma cell line
title_short Quantitative proteomic analysis for radiation-induced cell cycle suspension in 92-1 melanoma cell line
title_sort quantitative proteomic analysis for radiation-induced cell cycle suspension in 92-1 melanoma cell line
topic Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3709680/
https://www.ncbi.nlm.nih.gov/pubmed/23447694
http://dx.doi.org/10.1093/jrr/rrt010
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