Targeting Proteolysis with Cyanogenic Glycoside Amygdalin Induces Apoptosis in Breast Cancer Cells
Valentina Cecarini1, Salima Selmi2,3, Massimiliano Cuccioloni1
1School of Biosciences and Veterinary Medicine, University of Camerino, Via Gentile III da Varano, 62032 Camerino, Italy.
Background:
Breast cancer is the most diagnosed cancer among women, and its incidence and mortality are rapidly growing worldwide. In this regard, plant-derived natural compounds have been shown to be effective as chemotherapeutic and preventative agents. Apricot kernels are a rich source of nutrients including proteins, lipids, fibers, and phenolic compounds and contain the aromatic cyanogenic glycoside amygdalin that has been shown to exert a cytotoxic effect on cancer cells by affecting the cell cycle, inducing apoptosis, and regulating the immune function.
Methods:
Here, we describe a previously unexplored proapoptotic mechanism of action of amygdalin in breast cancer (MCF7) cells that involves the modulation of intracellular proteolysis. For comparative purposes, the same investigations were also conducted upon cell treatment with two apricot kernel aqueous extracts from Prunus armeniaca L.
Results:
We observed that both the 20S and 26S proteasome activities were downregulated in the MCF7 cells upon 24 h treatments. Simultaneously, the autophagy cascade resulted in being impaired due to cathepsin B and L inhibition that also contributed to a reduction in cancer cell migration. The inhibition of these proteolytic systems finally promoted the activation of apoptotic events in the MCF7 cells.
Conclusion:
Collectively, our data unveil a novel mechanism of the anticancer activity of amygdalin, prompting further investigations for potential application in cancer preventative strategies.
Insights
Apricot kernels contain amygdalin, which shows anticancer properties by inducing apoptosis in breast cancer cells. This study reveals a novel mechanism involving proteasome and autophagy modulation for potential cancer prevention strategies.
Area of Science:
- Oncology
- Natural Product Chemistry
- Cell Biology
Background:
- Breast cancer is a leading cause of cancer death in women globally.
- Plant-derived compounds, like those in apricot kernels, offer potential chemotherapeutic and preventative benefits.
- Amygdalin, found in apricot kernels, exhibits cytotoxic effects on cancer cells.
Purpose of the Study:
- To investigate the proapoptotic mechanism of amygdalin in breast cancer (MCF7) cells.
- To explore amygdalin's effect on intracellular proteolysis pathways.
- To compare amygdalin's action with apricot kernel aqueous extracts.
Main Methods:
- Treatment of MCF7 cells with amygdalin and apricot kernel extracts.
- Assay of 20S and 26S proteasome activities.
- Analysis of autophagy cascade, cathepsin B and L activity, and cell migration.
Main Results:
- Amygdalin downregulated both 20S and 26S proteasome activities in MCF7 cells.
- Cathepsin B and L inhibition impaired autophagy and reduced cancer cell migration.
- Inhibition of proteolytic systems led to apoptosis activation in breast cancer cells.
Conclusions:
- Amygdalin exhibits anticancer activity through a novel mechanism involving proteolysis modulation.
- The findings suggest potential applications of amygdalin in cancer prevention.
- Further research is warranted to explore amygdalin's therapeutic potential.
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