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Control and expression of oestrone sulphatase activities in human breast cancer

J R Pasqualini1, G Chetrite, E L Nestour

  • 1CNRS Steroid Hormone Research Unit, Paris, France.

Insights

Blocking oestrone sulphatase (E1S) offers a new breast cancer treatment strategy. Inhibiting E1S activity and its mRNA in hormone-dependent breast cancer cells shows promise for blocking cancer growth.

Area of Science:

  • Endocrinology
  • Oncology
  • Biochemistry

Background:

  • Oestradiol (E2) drives breast cancer growth, making hormone blockade a key therapeutic target.
  • Post-menopausal breast cancer tissue shows significantly elevated oestrogen levels, particularly oestrone sulphate (E1S).
  • Two pathways, sulphatase and aromatase, produce oestrogens; the sulphatase pathway is considerably more active in breast cancer.

Purpose of the Study:

  • To investigate the role of the sulphatase pathway in oestrogen formation in breast cancer.
  • To evaluate the efficacy of inhibiting oestrone sulphatase (E1S) as a therapeutic strategy.
  • To explore the relationship between E1S mRNA expression and enzyme activity in different breast cancer cell lines.

Main Methods:

  • Measurement of oestrogen conversion from E1S in hormone-dependent and independent breast cancer cells.
  • Analysis of oestrone sulphatase activity in intact cells versus homogenized cells.
  • Assessment of E1S mRNA expression using reverse transcriptase-PCR.
  • Testing the inhibitory effects of compounds like promegestone (R-5020) and danazol on sulphatase activity and mRNA levels.

Main Results:

  • Intact hormone-dependent breast cancer cells efficiently convert E1S to E2, while hormone-independent cells show minimal conversion, despite high sulphatase activity upon homogenization.
  • This suggests the presence of inhibitory factors in hormone-independent cells, potentially linked to their resistance.
  • Promegestone (R-5020) and danazol effectively inhibit sulphatase activity in hormone-dependent cells.
  • E1S mRNA expression correlates with enzymatic activity and is higher in certain cell lines (T-471, MDA-MB-231).
  • R-5020 significantly reduces E1S mRNA levels, indicating a complex inhibitory mechanism.

Conclusions:

  • The sulphatase pathway is a critical source of oestrogens in breast cancer.
  • Specific inhibition of oestrone sulphatase presents a promising therapeutic avenue for breast cancer treatment, complementing aromatase inhibition.
  • The regulation of sulphatase activity involves both direct enzyme inhibition and transcriptional control.

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