Proteomic analysis of energy metabolism and signal transduction in irradiated melanoma cells
AIM: To analyze proteomic and signal transduction alterations in irradiated melanoma cells. METHODS: We combined stable isotope labeling with amino acids in cell culture (SILAC) with highly sensitive shotgun tandem mass spectrometry (MS) to create an efficient approach for protein quantification. Pr...
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Online Access: | http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3693007/ |
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doaj-7621c17b109343b4b7d95f693898e6d92020-11-24T20:54:24ZengPress of International Journal of Ophthalmology (IJO PRESS)International Journal of Ophthalmology2222-39592227-48982013-06-016328629410.3980/j.issn.2222-3959.2013.03.06Proteomic analysis of energy metabolism and signal transduction in irradiated melanoma cellsYang ShenYi-Lan SunZhi-Tong BingKai ShiLu-Bin YanAIM: To analyze proteomic and signal transduction alterations in irradiated melanoma cells. METHODS: We combined stable isotope labeling with amino acids in cell culture (SILAC) with highly sensitive shotgun tandem mass spectrometry (MS) to create an efficient approach for protein quantification. Protein-protein interaction was used to analyze relationships among proteins. RESULTS: Energy metabolism protein levels were significantly different in glycolysis and not significantly different in oxidative phosphorylation after irradiation. Conversely, tumor suppressor proteins related to cell growth and development were downregulated, and those related to cell death and cell cycle were upregulated in irradiated cells. CONCLUSION: Our results indicate that irradiation induces differential expression of the 29 identified proteins closely related to cell survival, cell cycle arrest, and growth inhibition. The data may provide new insights into the pathogenesis of uveal melanoma and guide appropriate radiotherapyhttp://www.ncbi.nlm.nih.gov/pmc/articles/PMC3693007/melanoma cell2D-LC-MS/MSstable isotope labeling with amino acidsproteomic analysisX-ray irradiationprotein-protein interaction |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yang Shen Yi-Lan Sun Zhi-Tong Bing Kai Shi Lu-Bin Yan |
spellingShingle |
Yang Shen Yi-Lan Sun Zhi-Tong Bing Kai Shi Lu-Bin Yan Proteomic analysis of energy metabolism and signal transduction in irradiated melanoma cells International Journal of Ophthalmology melanoma cell 2D-LC-MS/MS stable isotope labeling with amino acids proteomic analysis X-ray irradiation protein-protein interaction |
author_facet |
Yang Shen Yi-Lan Sun Zhi-Tong Bing Kai Shi Lu-Bin Yan |
author_sort |
Yang Shen |
title |
Proteomic analysis of energy metabolism and signal transduction in irradiated melanoma cells |
title_short |
Proteomic analysis of energy metabolism and signal transduction in irradiated melanoma cells |
title_full |
Proteomic analysis of energy metabolism and signal transduction in irradiated melanoma cells |
title_fullStr |
Proteomic analysis of energy metabolism and signal transduction in irradiated melanoma cells |
title_full_unstemmed |
Proteomic analysis of energy metabolism and signal transduction in irradiated melanoma cells |
title_sort |
proteomic analysis of energy metabolism and signal transduction in irradiated melanoma cells |
publisher |
Press of International Journal of Ophthalmology (IJO PRESS) |
series |
International Journal of Ophthalmology |
issn |
2222-3959 2227-4898 |
publishDate |
2013-06-01 |
description |
AIM: To analyze proteomic and signal transduction alterations in irradiated melanoma cells. METHODS: We combined stable isotope labeling with amino acids in cell culture (SILAC) with highly sensitive shotgun tandem mass spectrometry (MS) to create an efficient approach for protein quantification. Protein-protein interaction was used to analyze relationships among proteins. RESULTS: Energy metabolism protein levels were significantly different in glycolysis and not significantly different in oxidative phosphorylation after irradiation. Conversely, tumor suppressor proteins related to cell growth and development were downregulated, and those related to cell death and cell cycle were upregulated in irradiated cells. CONCLUSION: Our results indicate that irradiation induces differential expression of the 29 identified proteins closely related to cell survival, cell cycle arrest, and growth inhibition. The data may provide new insights into the pathogenesis of uveal melanoma and guide appropriate radiotherapy |
topic |
melanoma cell 2D-LC-MS/MS stable isotope labeling with amino acids proteomic analysis X-ray irradiation protein-protein interaction |
url |
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3693007/ |
work_keys_str_mv |
AT yangshen proteomicanalysisofenergymetabolismandsignaltransductioninirradiatedmelanomacells AT yilansun proteomicanalysisofenergymetabolismandsignaltransductioninirradiatedmelanomacells AT zhitongbing proteomicanalysisofenergymetabolismandsignaltransductioninirradiatedmelanomacells AT kaishi proteomicanalysisofenergymetabolismandsignaltransductioninirradiatedmelanomacells AT lubinyan proteomicanalysisofenergymetabolismandsignaltransductioninirradiatedmelanomacells |
_version_ |
1716794593765228544 |