Hpr6.6 protein mediates cell death from oxidative damage in MCF-7 human breast cancer cells
1Division of Surgical Oncology, Department of Surgery, Lineberger Comprehensive Cancer Center, University of North Carolina, Chapel Hill, North Carolina, USA.
Abstract:
Reactive oxygen species (ROS) cause cell death and are associated with a variety of maladies, from trauma and infection to organ degeneration and cancer. Cells mount a complex response to oxidative damage that includes signaling from transmembrane receptors and intracellular kinases. We have analyzed the response to oxidative damage in human breast cancer cells expressing the Hpr6.6 (human membrane progesterone receptor) protein. Although Hpr6.6 is related to a putative progesterone-binding protein, Hpr6.6 is widely expressed in epithelial tissues and shares close homology with a budding yeast damage response protein called Dap1p (damage response protein related to membrane progesterone receptor). We report here that the Hpr6.6 protein regulates the response to oxidative damage in breast cancer cells. Expression of Hpr6.6 in MCF-7 cells sensitized the cells to death following long-term/low dose or short-term/high dose treatment with hydrogen peroxide. Cell death did not occur through a typical apoptotic mechanism and corresponded with hyperphosphorylation of the Akt and IkappaB proteins. However, inhibition of Akt activation and IkappaB degradation had no effect on Hpr6.6-mediated cell death, suggesting that Hpr6.6 regulates cell death through a novel oxidative damage response pathway. Our work indicates a key regulatory function for Hpr6.6 in epithelial tissues exposed to oxidative damage.
Insights
The human membrane progesterone receptor (Hpr6.6) protein regulates cell death in breast cancer cells exposed to oxidative stress. This protein mediates cell death through a novel pathway, distinct from typical apoptosis.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- Reactive oxygen species (ROS) contribute to cell death and diseases like cancer.
- Cells have complex signaling pathways to respond to oxidative damage.
- The Hpr6.6 protein, related to progesterone receptors, is homologous to yeast damage response protein Dap1p.
Purpose of the Study:
- To investigate the role of Hpr6.6 in the cellular response to oxidative damage.
- To determine the mechanism of Hpr6.6-mediated cell death in human breast cancer cells.
Main Methods:
- Expressing Hpr6.6 in MCF-7 human breast cancer cells.
- Treating cells with hydrogen peroxide (H2O2) under varying dose and duration.
- Analyzing cell death mechanisms, including apoptosis, Akt, and IkappaB phosphorylation.
- Inhibiting Akt activation and IkappaB degradation.
Main Results:
- Hpr6.6 expression sensitized MCF-7 cells to H2O2-induced death.
- Cell death occurred independently of typical apoptosis.
- Hpr6.6-mediated cell death involved hyperphosphorylation of Akt and IkappaB.
- Inhibiting Akt and IkappaB did not affect Hpr6.6-mediated cell death.
Conclusions:
- Hpr6.6 plays a key regulatory role in the response to oxidative damage in epithelial tissues.
- Hpr6.6 mediates cell death via a novel oxidative damage response pathway.
- This pathway appears distinct from canonical apoptotic and Akt/IkappaB signaling routes.
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