Antiestrogen Resistant Cell Lines Expressing Estrogen Receptor α Mutations Upregulate the Unfolded Protein Response

Chengjian Mao1, Mara Livezey1, Ji Eun Kim1

  • 1Department of Biochemistry, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

Scientific Reports
|October 8, 2016
PubMed

Insights

Estrogen receptor alpha (ERα) mutations Y537S and D538G drive endocrine therapy resistance in breast cancer. A novel ERα biomodulator, BHPI, effectively blocked proliferation by hyperactivating the unfolded protein response (UPR).

Area of Science:

  • Molecular biology
  • Cancer research
  • Endocrinology

Background:

  • Metastatic outgrowth of estrogen receptor alpha (ERα) mutations Y537S and D538G is common following endocrine therapy for ERα-positive breast cancer.
  • The functional impact of these ERα mutations replacing wild-type ERα in breast cancer cells remained unclear.

Purpose of the Study:

  • To characterize the biological effects of ERα mutations Y537S and D538G in breast cancer cells.
  • To investigate the efficacy of a novel ERα biomodulator, BHPI, in overcoming endocrine resistance driven by these mutations.

Main Methods:

  • Utilized CRISPR-Cas9 genome editing and homology directed repair to generate 14 T47D cell lines with specific ERα mutations (Y537S or D538G).
  • Assessed cell proliferation using 2D and 3D cell culture, including anchorage-independent growth.
  • Investigated the effects of progestins, 4-hydroxytamoxifen, fulvestrant/ICI 182,780 (ICI), and the ERα biomodulator BHPI on cell growth and gene expression.
  • Analyzed the activation of the unfolded protein response (UPR) and ERα target gene expression.

Main Results:

  • ERαY537S and ERαD538G mutant cells exhibited estrogen-independent growth and increased proliferation when treated with progestins.
  • These mutant cells displayed constitutive activation of estrogen-ERα target genes and partial resistance to antiestrogens like ICI.
  • The ERα biomodulator BHPI completely inhibited proliferation in these resistant cell lines by hyperactivating the UPR.
  • Constitutive UPR activation was observed in ERαY537S cells, further induced by progesterone, and UPR-regulated genes associated with tamoxifen resistance were upregulated.

Conclusions:

  • ERα mutations Y537S and D538G confer estrogen-independent growth and antiestrogen resistance in breast cancer cells.
  • Progestins, UPR activation, and potentially reduced ICI-induced ERα degradation contribute to this resistance.
  • The ERα biomodulator BHPI represents a promising therapeutic strategy by targeting the UPR to overcome endocrine resistance driven by ERα mutations.

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