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Proteomic analysis of doxorubicin‐induced changes in the proteome of HepG2cells combining 2‐D DIGE and LC‐MS/MS approaches
Authors:Elke Hammer  Sandra Bien  Manuela Gesell Salazar  Leif Steil  Christian Scharf  Petra Hildebrandt  Henry W S Schroeder  Heyo K Kroemer  Uwe Völker  Christoph A Ritter
Institution:1. Interfaculty Institute for Genetics and Functional Genomics, Ernst‐Moritz‐Arndt Universit?t, Greifswald, Germany;2. Institute for Pharmacology, Ernst‐Moritz‐Arndt Universit?t, Greifswald, Germany;3. Department of Otorhinolaryngology Head and Neck Surgery, Ernst‐Moritz‐Arndt Universit?t, Greifswald, Germany;4. Department of Neurosurgery, Ernst‐Moritz‐Arndt Universit?t, Greifswald, Germany;5. Institute of Pharmacy, Ernst‐Moritz‐Arndt Universit?t, Greifswald, Germany
Abstract:HepG‐2 cells are widely used as a cell model to investigate hepatocellular carcinomas and the effect of anticancer drugs such as doxorubicin, an effective antineoplastic agent, which has broad antitumoral activity against many solid and hematological malignancies. To investigate the effect of doxorubicin on the protein pattern, we used complementary proteomic workflows including 2‐D gel‐based and gel‐free methods. The analysis of crude HepG2 cell extracts by 2‐D DIGE provided data on 1835 protein spots which was then complemented by MS‐centered analysis of stable isotope labeling by amino acids in cell culture‐labeled cells. The monitoring of more than 1300 distinct proteins, including proteins of the membrane fraction provides the most comprehensive overview on the proteome of the widely used model cell line HepG2. Of the proteins monitored in total, 155 displayed doxorubicin‐induced changes in abundance. Functional analysis revealed major influences of doxorubicin on proteins involved in protein synthesis, DNA damage control, electron transport/mitochondrial function, and tumor growth. The strongest decrease in level was found for proteins involved in DNA replication and protein synthesis, whereas proteins with a function in DNA damage control and oxidative stress management displayed increased levels following treatment with doxorubicin compared with control cells. Furthermore, the doxorubicin‐associated increase in levels of multiple forms of keratins 8, 18, and 19 and other structural proteins revealed an influence on the cytoskeleton network.
Keywords:1‐D electrophoresis in combination with LC‐MS/MS  2‐D DIGE  Cell biology  Differential protein expression  Doxorubicin‐induced toxicity  Stable isotope labeling
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