MYB regulates the DNA damage response and components of the homology-directed repair pathway in human estrogen receptor-positive breast cancer cells

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作者
Ren-Ming Yang
Devathri Nanayakkara
Murugan Kalimutho
Partha Mitra
Kum Kum Khanna
Eloise Dray
Thomas J. Gonda
机构
[1] University of Queensland,School of Pharmacy
[2] QIMR Berghofer Medical Research Institute,Signal Transduction Laboratory
[3] QUT at the Translational Research Institute,Institute of Health and Biomedical Innovations
[4] Mater Research/UQ at the Translational Research Institute,Keck School of Medicine at the Children’s Hospital Los Angeles Campus
[5] University of South Australia Cancer Research Institute,Institute of Health and Biomedical Innovation
[6] University of Southern California,undefined
[7] Queensland University of Technology,undefined
[8] University of Texas Health,undefined
[9] San Antonio,undefined
[10] Department of Biochemistry and Structural Biology,undefined
来源
Oncogene | 2019年 / 38卷
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摘要
Over 70% of human breast cancers are estrogen receptor-positive (ER+), most of which express MYB. In these and other cell types, the MYB transcription factor regulates the expression of many genes involved in cell proliferation, differentiation, tumorigenesis, and apoptosis. So far, no clear link has been established between MYB and the DNA damage response in breast cancer. Here, we found that silencing MYB in the ER+ breast cancer cell line MCF-7 led to increased DNA damage accumulation, as marked by increased γ-H2AX foci following induction of double-stranded breaks. We further found that this was likely mediated by decreased homologous recombination-mediated repair (HRR), since silencing MYB impaired the formation of RAD51 foci in response to DNA damage. Moreover, cells depleted for MYB exhibited reduced expression of several key genes involved in HRR including BRCA1, PALB2, and TOPBP1. Taken together, these data imply that MYB and its targets play an important role in the response of ER+ breast cancer cells to DNA damage, and suggest that induction of DNA damage along with inhibition of MYB activity could offer therapeutic benefits for ER+ breast cancer and possibly other cancer types.
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页码:5239 / 5249
页数:10
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