Diallyl trisulfide inhibits estrogen receptor-α activity in human breast cancer cells

Eun-Ryeong Hahm1, Shivendra V Singh

  • 1Department of Pharmacology & Chemical Biology, and University of Pittsburgh Cancer Institute, University of Pittsburgh School of Medicine, 2.32A Hillman Cancer Center Research Pavilion, 5117 Centre Avenue, Pittsburgh, PA, 15213, USA.

Insights

Garlic compound diallyl trisulfide (DATS) inhibits estrogen receptor-alpha (ER-α) activity in breast cancer cells. This discovery reveals a new mechanism for DATS

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Organosulfur compounds in garlic show anticancer potential in preclinical models.
  • Mechanisms of garlic's anticancer effects, particularly from diallyl trisulfide (DATS), are not fully understood.
  • Estrogen receptor-alpha (ER-α) is a key factor in many breast cancers.

Purpose of the Study:

  • To investigate the effect of diallyl trisulfide (DATS) on estrogen receptor-alpha (ER-α) activity in human breast cancer cells.
  • To elucidate the molecular mechanisms underlying DATS's anticancer effects related to ER-α.

Main Methods:

  • Exposure of MCF-7 and T47D breast cancer cells to DATS.
  • Assessment of ER-α protein and mRNA levels, and target gene expression (pS2, cyclin D1).
  • Analysis of nuclear ER-α levels, reporter gene activity, and effects in cells with ectopic ER-α expression or Pin1 modulation.

Main Results:

  • DATS significantly downregulated ER-α protein and mRNA expression in breast cancer cells.
  • DATS inhibited ER-α target gene products and reporter activity, indicating functional suppression.
  • DATS-induced apoptosis and cell viability inhibition were independent of ER-α and not affected by estradiol.
  • DATS decreased peptidyl-prolyl cis-trans isomerase (Pin1) levels, and Pin1 modulation affected DATS's impact on ER-α and apoptosis.

Conclusions:

  • Estrogen receptor-alpha (ER-α) is identified as a novel molecular target of diallyl trisulfide (DATS) in mammary cancer cells.
  • DATS exhibits anticancer activity through mechanisms involving ER-α inhibition.
  • These findings provide new insights into the therapeutic potential of DATS for breast cancer treatment.

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