Evidence for a biphasic apoptotic pathway induced by melatonin in MCF-7 breast cancer cells
Alessandra Cucina1, Sara Proietti, Fabrizio D'Anselmi
1Surgery Department "Pietro Valdoni", Rome, Italy.
Abstract:
Previous investigations demonstrated that melatonin exerts an oncostatic action on estrogen-responsive breast cancer, both in vitro and in vivo. Nevertheless, the pro-apoptotic effect of melatonin is still a matter of debate. An experimental study was undertaken to focus on melatonin-related apoptosis and to identify the apoptotic pathways involved. Whole cell-count, flow-cytometry analysis and proteins involved in apoptotic pathways [p53, p73, murine double minute 2 (MDM2), caspases-9,-7,-6, cleaved-poly ADP ribose polymerase (PARP), Bcl-2, Bax and apoptotic inducing factor (AIF)] were investigated in human MCF-7 breast cancer cells treated with physiological (1 nM) concentration of melatonin. Melatonin exerts a significant growth-inhibitory effect on MCF-7 cells, becoming evident after 72 hr and thereafter increasing linearly up to 144 hr. In this model, the growth-inhibition is transforming growth factor beta 1 (TGFbeta1)-dependent and it might be reversed by adding an anti-TGFbeta1 antibody. Melatonin induces a significant rise in apoptotic rate, at both 24 and 96 hr. The anti-TGFbeta1 antibody almost completely suppresses melatonin-related late apoptosis; however, early apoptosis is unaffected. Early programmed cell death is associated with a significant increase in the p53/MDM2 ratio and in AIF release, without modifications in caspase activity or cleaved-PARP levels. Activated caspases-9 and -7 and cleaved-PARP increased significantly at 96 hr, concomitantly with a down-regulation of the Bcl-2/Bax ratio. These data suggest that two distinct apoptotic processes are triggered by melatonin in MCF-7 cells: an early, TGFbeta1 and caspase-independent response, and a late apoptotic TGFbeta1-dependent process in which activated-caspase-7 is likely to be the terminal effector.
Insights
Melatonin significantly inhibits growth and induces apoptosis in human breast cancer cells through two distinct pathways. An early, caspase-independent process and a later, TGFbeta1-dependent apoptotic response were identified.
Area of Science:
- Molecular Biology
- Cancer Research
- Endocrinology
Background:
- Melatonin demonstrates oncostatic effects on estrogen-responsive breast cancer.
- The precise pro-apoptotic mechanisms of melatonin remain under investigation.
Purpose of the Study:
- To investigate melatonin-induced apoptosis in human MCF-7 breast cancer cells.
- To identify the specific apoptotic pathways activated by melatonin.
Main Methods:
- Human MCF-7 breast cancer cells were treated with physiological melatonin concentrations (1 nM).
- Assessed cell count, flow cytometry, and key apoptotic proteins (p53, p73, MDM2, caspases, PARP, Bcl-2, Bax, AIF).
- Investigated the role of transforming growth factor beta 1 (TGFbeta1) and its antibody in melatonin's effects.
Main Results:
- Melatonin significantly inhibited MCF-7 cell growth, dependent on TGFbeta1.
- Melatonin induced apoptosis via two distinct pathways: an early, caspase-independent response (increased p53/MDM2 ratio, AIF release) and a late, TGFbeta1-dependent response (activated caspases-9 and -7, cleaved PARP, altered Bcl-2/Bax ratio).
- The anti-TGFbeta1 antibody suppressed late apoptosis but not early apoptosis.
Conclusions:
- Melatonin triggers a dual apoptotic response in MCF-7 cells.
- Early apoptosis is TGFbeta1 and caspase-independent, involving p53 and AIF.
- Late apoptosis is TGFbeta1-dependent, with caspase-7 acting as a terminal effector.
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