Targeting the Transposase Domain of the DNA Repair Component Metnase to Enhance Chemotherapy
Contribuinte(s) |
UNIVERSIDADE DE SÃO PAULO |
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Data(s) |
07/11/2013
07/11/2013
2012
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Resumo |
Previous studies have shown that the DNA repair component Metnase (SETMAR) mediates resistance to DNA damaging cancer chemotherapy. Metnase has a nuclease domain that shares homology with the Transposase family. We therefore virtually screened the tertiary Metnase structure against the 550,000 compound ChemDiv library to identify small molecules that might dock in the active site of the transposase nuclease domain of Metnase. We identified eight compounds as possible Metnase inhibitors. Interestingly, among these candidate inhibitors were quinolone antibiotics and HIV integrase inhibitors, which share common structural features. Previous reports have described possible activity of quinolones as antineoplastic agents. Therefore, we chose the quinolone ciprofloxacin for further study, based on its wide clinical availability and low toxicity. We found that ciprofloxacin inhibits the ability of Metnase to cleave DNA and inhibits Metnase-dependent DNA repair. Ciprofloxacin on its own did not induce DNA damage, but it did reduce repair of chemotherapy-induced DNA damage. Ciprofloxacin increased the sensitivity of cancer cell lines and a xenograft tumor model to clinically relevant chemotherapy. These studies provide a mechanism for the previously postulated antineoplastic activity of quinolones, and suggest that ciprofloxacin might be a simple yet effective adjunct to cancer chemotherapy. Cancer Res; 72(23); 6200-8. (C) 2012 AACR. NIH [R01 CA092111, R01 CA151367, R01 GM084020, R01 CA102283, R01 HL075783, R01 CA139429] Leukemia and Lymphoma Society NIH, Center Driven Initiative 1 [5U54MH084690-02] Sunset Molecular Discovery LLC Givaudan Flavors Corporation |
Identificador |
CANCER RESEARCH, PHILADELPHIA, v. 72, n. 23, p. 6200-6208, DEC 1, 2012 0008-5472 http://www.producao.usp.br/handle/BDPI/43070 10.1158/0008-5472.CAN-12-0313 |
Idioma(s) |
eng |
Publicador |
AMER ASSOC CANCER RESEARCH PHILADELPHIA |
Relação |
CANCER RESEARCH |
Direitos |
restrictedAccess Copyright AMER ASSOC CANCER RESEARCH |
Palavras-Chave | #CARCINOMA IN-VITRO #CELL-CYCLE ARREST #LUNG-CANCER #BIOCHEMICAL-CHARACTERIZATION #CHROMOSOME DECATENATION #INHIBITS PROLIFERATION #HIV-1 INTEGRASE #LEUKEMIA CELLS #TUMOR-GROWTH #CIPROFLOXACIN #ONCOLOGY |
Tipo |
article original article publishedVersion |