Quantitative proteomics unveiled: Regulation of DNA double strand break repair by EGFR involves PARP1

被引:10
作者
Myllynen, Laura [1 ]
Kwiatkowski, Marcel [2 ]
Gleissner, Lisa [1 ]
Riepen, Britta [1 ]
Hoffer, Konstantin [1 ]
Wurlitzer, Marcus [2 ]
Petersen, Cordula [1 ]
Dikomey, Ekkehard [1 ]
Rothkamm, Kai [1 ]
Schlueter, Hartmut [2 ]
Kriegs, Malte [1 ]
机构
[1] Univ Med Ctr Hamburg Eppendorf, Lab Radiobiol & Expt Radiooncol, D-20246 Hamburg, Germany
[2] Univ Med Ctr Hamburg Eppendorf, Inst Clin Chem, D-20246 Hamburg, Germany
关键词
DNA repair proteins; Quantitative proteomics; SILAC; Phosphorylation; EGFR inhibition; PARP1; DAMAGE RESPONSE; CANCER-CELLS; RECEPTOR; INHIBITION; ACTIVATION; RADIATION; PHOSPHORYLATION; NITROSYLATION; EXPRESSION; CARCINOMA;
D O I
10.1016/j.radonc.2015.09.018
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background: EGFR inhibition blocks DNA double strand break (DSB) repair but the detailed mechanisms are still unclear. We asked whether EGFR inhibition blocks DSB repair by reducing the X-ray-induced phosphorylation of repair proteins using a phosphoproteomic approach. Materials and methods: Using UT-SCC5 and SAS head and neck cancer cells we established a differential phosphoproteomic approach for quantitative analysis of DNA repair proteins by stable isotope labeling with amino acids. Nuclear phosphoproteins were isolated and analyzed by liquid chromatography/tandem mass spectrometry. Erlotinib, PD98059 and olaparib were used to inhibit EGFR, MEK1/2 and PARP1, respectively. PARP1 was knocked down by siRNA. DSB repair was measured by quantifying residual 53BP1 foci. Results: Over 150 nuclear phosphoproteins were quantified after irradiation, including 24 DNA repair proteins. Two of these, including PARP1, were consistently reduced in both cell lines upon erlotinib treatment. PARP1 inhibition or knock-down and EGFR inhibition resulted in an analog number of residual foci which was not further increased by combination of both strategies. MEK1/2 inhibition with or without blockage of EGFR or PARP1 caused similar effects. Conclusion: We have established a powerful, quantitative phosphoproteomic approach to investigate regulatory mechanisms in DSB repair, dependent on protein phosphorylation after irradiation. Using this approach we have identified PARP1 as a mediator of EGFR/MEK-dependent regulation of DSB repair. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:423 / 430
页数:8
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