GREB1 isoforms regulate proliferation independent of ERα co-regulator activities in breast cancer

Corinne N Haines1,2, Kara M Braunreiter1, Xiaokui Molly Mo3

  • 1Department of Molecular GeneticsThe Ohio State University, Columbus, Ohio, USA.

Insights

Growth Regulation by Estrogen in Breast Cancer 1 (GREB1) isoforms regulate breast cancer cell proliferation independently of estrogen receptor alpha (ERα). GREB1a also functions as a transcriptional regulator, with GREB1b and GREB1c showing increased expression in malignant tissues.

Area of Science:

  • Molecular Biology
  • Cancer Research
  • Genetics

Background:

  • Estrogen receptor alpha (ERα) activation is key in breast cancer development.
  • The GREB1 gene, regulated by ERα, influences proliferation and ERα activity.
  • GREB1 has three isoforms (GREB1a, GREB1b, GREB1c) with unknown functions.

Purpose of the Study:

  • Investigate the roles of GREB1 isoforms in ERα activity and breast cancer cell proliferation.
  • Determine the specific functions and interactions of GREB1a, GREB1b, and GREB1c.

Main Methods:

  • Mapping GREB1 interaction with ERα.
  • Analyzing isoform-specific regulation of ERα activity.
  • Assessing the impact of GREB1 isoform expression on proliferation and gene expression in breast cancer cell lines.
  • Comparing GREB1 isoform mRNA levels in normal and malignant breast tissues.

Main Results:

  • GREB1 interaction with ERα is localized to the shared amino terminus.
  • No GREB1 isoform demonstrated potent ERα co-regulatory activity.
  • GREB1a showed some specificity in regulating ER-target genes independently of ERα.
  • All GREB1 isoforms decreased proliferation in both ER-positive and ER-negative cells, indicating ER-independent function.
  • GREB1b and GREB1c mRNA levels were elevated in malignant breast tissue compared to normal samples.

Conclusions:

  • GREB1a possesses isoform-specific transcriptional regulatory functions.
  • All GREB1 isoforms exhibit ER-independent proliferation regulation.
  • GREB1b and GREB1c may play roles in breast cancer malignant transformation.

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