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Updated: Mar 22, 2026

Detecting the Ligand-binding Domain Dimerization Activity of Estrogen Receptor Alpha Using the Mammalian Two-Hybrid Assay
Published on: December 19, 2018
KLF17 attenuates estrogen receptor α-mediated signaling by impeding ERα function on chromatin and determines response
Amjad Ali1, Irina Ielciu2, Huda Mohammad Alkreathy3
1Institute of Integrative Biosciences, CECOS University of IT and Emerging Sciences, Hayatabad, Sector F-5, Phase VI, Peshawar, K.P.K, Pakistan; Institute of Biomedical Sciences, School of Life Sciences, East China Normal University, 500 Dongchuan Road, Shanghai 200241, People's Republic of China.
Abstract:
Luminal-like breast cancer expressing estrogen receptor α (ERα) is among the aggressive breast tumor subtypes and shows poor prognosis. KLF17 plays a key role in breast cancer inhibition. However, the underlying mechanisms by which KLF17 control breast cancer progression remains unknown. Here, we show that KLF17 antagonizes ERα-dependent signaling to suppress breast cancer progression. KLF17 alters ERα-binding pattern throughout the genome and co-localizes with ERα on chromatin. Mechanistically, KLF17 forms a complex with ERα that interferes with ERα binding on chromatin and thereby attenuates ERα-dependent pathway. KLF17 increases the methylation status of ERE target promoters by recruiting transcriptional corepressor N-CoR/HDAC1 complex and prevents RNA polymerase II binding to suppress ERα-dependent transcriptional activation. Importantly, KLF17 preoccupies a subset of ERE target gene promoters and inhibits interaction of ERα with chromatin. Conversely, estrogen signaling suppresses KLF17 transcription via ERα/HDAC1-dependent mechanism. KLF17 expression negatively correlates with ERα target genes in multiple breast cancer samples. Enhanced KLF17 expression sensitizes ERα-positive breast cancer cells to endocrine therapy. KLF17 expression is downregulated in luminal breast cancer subtypes and is associated with poor survival rates in breast cancer patients. Taken together, these results indicate that KLF17-ERα interaction plays a potential role in inhibition of ERα-dependent breast cancer progression and suggests an improved strategy for treatment of ERα-positive breast cancer patients.
Insights
Krüppel-like factor 17 (KLF17) inhibits estrogen receptor α (ERα)-driven breast cancer by disrupting ERα binding to chromatin. Upregulating KLF17 may improve endocrine therapy for ERα-positive breast cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Luminal-like breast cancer with estrogen receptor α (ERα) expression is aggressive and has a poor prognosis.
- Krüppel-like factor 17 (KLF17) is implicated in breast cancer inhibition, but its precise role and mechanism remain unclear.
Purpose of the Study:
- To elucidate the mechanism by which KLF17 suppresses breast cancer progression.
- To investigate the interaction between KLF17 and ERα signaling in breast cancer.
Main Methods:
- Chromatin immunoprecipitation assays to analyze ERα binding patterns.
- Co-immunoprecipitation to detect KLF17-ERα complex formation.
- Gene expression analysis and methylation profiling of target genes.
Main Results:
- KLF17 antagonizes ERα signaling by altering ERα chromatin binding and forming a complex with ERα.
- KLF17 recruits N-CoR/HDAC1 to ERE target promoters, increasing methylation and suppressing ERα-dependent transcription.
- KLF17 expression is inversely correlated with ERα target genes and is downregulated in luminal breast cancer, correlating with poor survival.
Conclusions:
- The KLF17-ERα interaction is a key mechanism inhibiting ERα-dependent breast cancer progression.
- KLF17 enhances sensitivity to endocrine therapy, suggesting its potential as a therapeutic target for ERα-positive breast cancer.
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