Related Experiment Videos
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.
Abstract:
Oestradiol (E2) is one of the most important factors supporting the growth and evolution of breast cancer; consequently, to block this hormone has been one of the main targets in recent years. The evaluation of oestrogens (oestrone, oestradiol and their sulphates) in the breast tissue of post-menopausal patients with breast cancer indicates high levels, particularly of oestrone sulphate (E1S) which is 15-25 times higher than in the plasma. Two main pathways are involved in the formation of oestrogens the sulphatase pathway which transforms E1,S into oestrone (E1), and the aromatase pathway which converts androgens into oestrogens. Comparative studies in breast cancer tissues show that the sulphatase pathway is 50-300 times more important than that of the aromatase pathway. Using intact cells and physiological concentrations of E1S (5 x 10(9)M) the conversion to oestradiol was very intense with the hormone-dependent (T-171). MCF-7) breast cancer cells, but very little or no E2 was obtained with the hormone-independent (MDA-MB-231, MDA-MB-436) cells. However, when the latter cells were homogenized, the oestrone sulphatase became very intense. This contradiction in the comparison of the sulphatase activity of the intact cell and the homogenate of the hormone-independent cells can be explained by the presence of inhibitory factors or the absence of positive factor(s) involved in the enzyme activity, which could be related to the evolution of the cancer to hormone-independence. Testing different substances, it was proven that promegestone (R-5020), and danazol, as well as decapeptyl in the presence of heparin, are very active in inhibiting sulphatase activity in hormone-dependent breast cancer cells. Using reverse transcriptase-PCR it was possible to detect the presence of oestrone sulphatase mRNA in different mammary cancer cells. The expression of this mRNA is significantly higher in T-471) and MDA-MB-231 than in the other cell lines. A correlation of this mRNA with the enzymatic activities of oestrone sulphate was observed. The progestagen, R-5020, can significantly decrease the sulphatase mRNA in MCF-7 and T-471) cells. As this progestagen can also inhibit the enzyme itself, it is suggested that the decrease in sulphatase activity by antisulphatase agents in breast cancer cells is a complex mechanism involving not only the effect on the enzyme but also the transcriptional factor(s). It is concluded that in addition to the control of aromatase, specific inhibition of oestrone sulphatase with antisulphatase agents can open new possibilities in breast cancer treatment.
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.