Citation

  • Authors: Kerdivel, G., Boudot, A., Habauzit, D., Percevault, F., Demay, F., Pakdel, F., Flouriot, G.
  • Year: 2014
  • Journal: Mol Cell Endocrinol 390 34-44
  • Applications: in vitro / DNA / jetPEI
  • Cell type: MCF7
    Description: Human breast adenocarcinoma cells
    Known as: MCF-7, MCF 7

Abstract

Estrogen receptor alpha (ERalpha) is generally considered to be a good prognostic marker because almost 70% of ERalpha-positive tumors respond to anti-hormone therapies. Unfortunately, during cancer progression, mammary tumors can escape from estrogen control, resulting in resistance to treatment. In this study, we demonstrate that activation of the actin/megakaryoblastic leukemia 1 (MKL1) signaling pathway promotes the hormonal escape of estrogen-sensitive breast cancer cell lines. The actin/MKL1 signaling pathway is silenced in differentiated ERalpha-positive breast cancer MCF-7 and T47D cell lines and active in ERalpha-negative HMT-3522 T4-2 and MDA-MB-231 breast cancer cells, which have undergone epithelial-mesenchymal transition. We showed that MKL1 activation in MCF-7 cells, either by modulating actin dynamics or using MKL1 mutants, down-regulates ERalpha expression and abolishes E2-dependent cell growth. Interestingly, the constitutively active form of MKL1 represses PR and HER2 expression in these cells and increases the expression of HB-EGF, TGFbeta, and amphiregulin growth factors in an E2-independent manner. The resulting expression profile (ER-, PR-, HER2-) typically corresponds to the triple-negative breast cancer expression profile.

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