The role of insulin-like growth factor binding protein-3 in the breast cancer cell response to DNA-damaging agents
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作者:
M Z Lin
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机构:Kolling Institute of Medical Research,Hormones and Cancer Division
M Z Lin
K A Marzec
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机构:Kolling Institute of Medical Research,Hormones and Cancer Division
K A Marzec
J L Martin
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机构:Kolling Institute of Medical Research,Hormones and Cancer Division
J L Martin
R C Baxter
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机构:Kolling Institute of Medical Research,Hormones and Cancer Division
R C Baxter
机构:
[1] Kolling Institute of Medical Research,Hormones and Cancer Division
[2] University of Sydney,undefined
[3] Royal North Shore Hospital,undefined
来源:
Oncogene
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2014年
/
33卷
关键词:
EGFR;
IGFBP-3;
breast cancer;
DNA-PK;
DNA-damaging therapy;
D O I:
暂无
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学科分类号:
摘要:
Following exposure to radiation and chemotherapeutic agents, the epidermal growth factor receptor (EGFR) can modulate the repair of DNA double-strand breaks (DSB) by forming protein complexes that include the catalytic subunit of DNA-dependent protein kinase (DNA-PKcs). This is one of the key mechanism by which tumors become resistant to DNA-damaging therapies. Our previous studies have shown that insulin-like growth factor binding protein-3 (IGFBP-3) is a substrate for DNA-PKcs, and can transactivate EGFR. We therefore questioned whether IGFBP-3 might interact with the EGFR−DNA-PK complex that regulates the DNA damage response. The aim of this study was to delineate the role of IGFBP-3 in the response of breast cancer cells to DSB-inducing chemotherapeutic agents. In the estrogen receptor-negative breast cancer cell lines MDA-MB-468 and Hs578T, which express IGFBP-3 highly, nuclear localization of EGFR and IGFBP-3 was enhanced by treatment with cytotoxic drugs etoposide or doxorubicin and reduced by the EGFR kinase inhibitor gefitinib. Enhanced association among IGFBP-3, EGFR and DNA-PKcs, following the exposure to DNA-damaging drugs was supported by both co-immunoprecipitation analysis and direct visualization by proximity ligation assay. The activation of DNA-PKcs at Ser2056, DNA repair as measured by a nonhomologous end-joining assay, and the increase in EGFR and DNA-PKcs interaction induced by DNA-damaging agents, were all decreased by IGFBP-3 silencing, suggesting that IGFBP-3 has an obligatory role in the DNA repair response to DNA-damaging therapy. In conclusion, IGFBP-3 co-translocation to the nucleus of breast cancer cells and its formation of a complex with DNA-PKcs and EGFR in response to DNA damage shows its potential involvement in the regulation of DNA repair. This suggests the possibility of a therapeutic approach for sensitizing breast cancer to chemo- or radiotherapy by targeting the DNA repair function of IGFBP-3.
机构:
Univ Sydney, Kolling Inst Med Res, Royal N Shore Hosp, St Leonards, NSW 2065, AustraliaUniv Sydney, Kolling Inst Med Res, Royal N Shore Hosp, St Leonards, NSW 2065, Australia
机构:
Univ Sydney, Royal N Shore Hosp, Kolling Inst Med Res, Hormones & Canc Div, St Leonards, NSW 2065, AustraliaUniv Sydney, Royal N Shore Hosp, Kolling Inst Med Res, Hormones & Canc Div, St Leonards, NSW 2065, Australia
Marzec, Kamila A.
Baxter, Robert C.
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机构:
Univ Sydney, Royal N Shore Hosp, Kolling Inst Med Res, Hormones & Canc Div, St Leonards, NSW 2065, AustraliaUniv Sydney, Royal N Shore Hosp, Kolling Inst Med Res, Hormones & Canc Div, St Leonards, NSW 2065, Australia
Baxter, Robert C.
Martin, Janet L.
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机构:
Univ Sydney, Royal N Shore Hosp, Kolling Inst Med Res, Hormones & Canc Div, St Leonards, NSW 2065, AustraliaUniv Sydney, Royal N Shore Hosp, Kolling Inst Med Res, Hormones & Canc Div, St Leonards, NSW 2065, Australia