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.

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.