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Updated: Mar 25, 2026

Profiling of Estrogen-regulated MicroRNAs in Breast Cancer Cells
Published on: February 21, 2014
ELF5 and DOK7 regulation in anti-estrogen treated cells and tumors
Lily M Fitzgerald1, Eva P Browne2, Kevin D Christie3
1Department of Environmental Science, University of Massachusetts Amherst, Amherst, MA USA.
Background:
Most women with primary breast cancers that express estrogen receptor alpha (ER or ESR1) are treated with endocrine therapies including the anti-estrogen tamoxifen, but resistance to these anti-endocrine therapies often develops. This study characterizes the expression of hormone receptors, and the mRNA and DNA methylation levels of docking protein 7 (DOK7), and E74-like factor 5 (ELF5), in 21 novel tamoxifen-resistant cell lines and extends the findings to primary and recurrent human breast tumors.
Methods:
Twenty-one tamoxifen-selected cell lines were developed through cloning by limiting dilution of an MCF-7 cell culture treated with 1 μM tamoxifen for 6 months. The parent (MCF-7) and tamoxifen-selected cell lines were characterized for protein expression of ER, progesterone receptor (PR) and human epidermal growth factor receptor 2 (HER2) using immunohistochemistry (IHC). The mRNA levels of ER, DOK7, and ELF5 were assessed using quantitative RT-PCR. Promoter methylation levels of DOK7 and ELF5 were determined by pyrosequencing of bisulfite-modified DNA. The relationship between hormone receptor status and promoter methylation of DOK7 and ELF5 was further examined using available methylation array data (Illumina HM450) from a set of paired primary and second breast tumors from 24 women.
Results:
All 21 of the novel tamoxifen-selected cell lines are ER-positive, and HER2-negative, and 18 of the cell lines are PR-negative while the MCF-7 cells were scored as ER-positive, modestly PR-positive and HER2 negative. Expression of DOK7 and ELF5 is significantly up-regulated in half of the tamoxifen-selected cell lines as compared to the parental MCF-7. In contrast, the previously established ER-negative TMX2-28 cell line has decreased expression of both DOK7 and ELF5 and increased DNA methylation in the transcriptional start site region of these genes. ELF5 methylation was lower in second versus primary tumors in women who received anti-estrogen treatment, in PR-negative versus PR-positive tumors, and in the subset of PR-positive first tumors from the group of women who had second PR-negative tumors as compared to those who had second PR-positive tumors.
Conclusions:
The distinct ELF5 methylation of PR-positive primary tumors from women who had a PR-negative recurrence indicates the possibility of stratification of women for tailored treatment in the early stages of disease.
Insights
Tamoxifen resistance in breast cancer is linked to changes in DOK7 and ELF5 gene expression and methylation. ELF5 methylation patterns in primary tumors may predict recurrence, suggesting potential for tailored treatments.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Estrogen receptor alpha (ER)-positive breast cancers are often treated with tamoxifen.
- Tamoxifen resistance is a significant clinical challenge.
- Understanding molecular mechanisms of resistance is crucial for improving patient outcomes.
Purpose of the Study:
- To characterize novel tamoxifen-resistant breast cancer cell lines.
- To investigate the expression and DNA methylation of DOK7 and ELF5 in tamoxifen resistance.
- To correlate findings with primary and recurrent human breast tumors.
Main Methods:
- Development of 21 novel tamoxifen-resistant MCF-7 cell lines.
- Protein expression analysis of ER, PR, and HER2 via immunohistochemistry.
- mRNA expression analysis of ER, DOK7, and ELF5 using RT-PCR.
- DNA methylation analysis of DOK7 and ELF5 promoter regions via pyrosequencing.
- Examination of methylation array data from paired primary and recurrent tumors.
Main Results:
- Tamoxifen-resistant cell lines were ER-positive, HER2-negative, and mostly PR-negative.
- DOK7 and ELF5 mRNA levels were upregulated in approximately half of the resistant cell lines.
- An ER-negative cell line showed decreased DOK7/ELF5 expression and increased DNA methylation.
- ELF5 methylation was lower in recurrent tumors compared to primary tumors, particularly in PR-negative cases.
Conclusions:
- Distinct ELF5 methylation patterns in PR-positive primary tumors that recur as PR-negative suggest stratification potential.
- These findings may enable tailored treatment strategies for breast cancer patients.
- Further research into ELF5 methylation could refine endocrine therapy selection.
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