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Estrogen receptor mutations in tamoxifen-resistant breast cancer

P S Karnik1, S Kulkarni, X P Liu

  • 1Experimental Therapeutics Program, Cleveland Clinic Research Foundation, Ohio 44195-5069.

Cancer Research
|January 15, 1994
PubMed

Insights

Mutations in the estrogen receptor (ER) are not the primary cause of tamoxifen resistance in most breast cancers. While some ER mutations were found in resistant tumors, they occurred infrequently, suggesting other mechanisms are at play.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Clinical resistance to antiestrogens, such as tamoxifen, poses a significant challenge in treating hormone-dependent breast cancers.
  • The estrogen receptor (ER) is crucial in mediating the effects of estrogens and antiestrogens, making it a potential target for understanding resistance mechanisms.

Purpose of the Study:

  • To investigate whether mutations in the estrogen receptor (ER) contribute to the development of tamoxifen resistance in breast tumors.
  • To determine the frequency of ER mutations in both tamoxifen-resistant and tamoxifen-sensitive breast cancer.

Main Methods:

  • Screening of the eight exons of estrogen receptor complementary DNA (cDNA) from 40 breast tumors (20 resistant, 20 sensitive) using Single Strand Conformation Polymorphism (SSCP).
  • Sequencing of variant conformers to identify specific nucleotide changes in the ER gene.

Main Results:

  • Two distinct mutations in exon 6 of the ER gene were identified in tamoxifen-resistant tumors: a 42-base pair replacement and a single base pair deletion.
  • These mutations, if translated, could lead to truncated ER proteins with impaired hormone-binding domains, potentially causing constitutive gene activation.
  • The majority (18 out of 20) of tamoxifen-resistant tumors analyzed did not exhibit mutations in the screened ER exons.

Conclusions:

  • Mutations in the estrogen receptor (ER) are found at a low frequency in tamoxifen-resistant breast tumors.
  • ER mutations do not appear to be the predominant mechanism driving estrogen-independent, tamoxifen-resistant breast cancer.

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