Antroquinonol, a Ubiquinone Derivative from the Mushroom Antrodia camphorata, Inhibits Colon Cancer Stem Cell-like Properties: Insights into the Molecular Mechanism and Inhibitory Targets.
Hsien-Chun LinMei-Hsiang LinJiahn-Haur LiaoTzu-Hua WuTzong-Huei LeeFwu-Long MiChi-Hao WuKu-Chung ChenChia-Hsiung ChengCheng-Hsun ChenPublished in: Journal of agricultural and food chemistry (2016)
Antroquinonol (ANQ) is a ubiquinone derivative from the unique mushroom Antrodia camphorata, which exhibits broad-spectrum bioactivities. The effects of ANQ on cancer stem cell-like properties in colon cancer, however, remain unclear. In this study, we found that ANQ inhibited growth of colon cancer cells. The 50% growth inhibitions (GI50) of ANQ on HCT15 and LoVo were 34.8 ± 0.07 and 17.9 ± 0.07 μM. Moreover, ANQ exhibited inhibitory activities toward migration/invasion and tumorsphere formation of colon cancer cells. Mechanistically, ANQ inhibited pluripotent and cancer stem cell-related genes and down-regulated β-catenin/T-cell factor (TCF) signaling. Moreover, activation of the phosphatidylinositol-3-kinase (PI3K)/AKT/β-catenin signaling axis was identified to be crucial for regulating the expressions of pluripotent genes, whereas suppression of PI3K/AKT by ANQ inhibited expressions of β-catenin and downstream targets. Molecular docking identified the potential interaction of ANQ with PI3K. Our data show for the first time that the bioactive component of A. camphorata, ANQ, suppresses stem cell-like properties via targeting PI3K/AKT/β-catenin signaling. ANQ could be a promising cancer prevention agent for colon cancer.
Keyphrases
- pi k akt
- cancer stem cells
- signaling pathway
- cell proliferation
- cell cycle arrest
- molecular docking
- epithelial mesenchymal transition
- stem cells
- molecular dynamics simulations
- papillary thyroid
- genome wide
- protein kinase
- cell death
- squamous cell
- squamous cell carcinoma
- machine learning
- climate change
- cell migration
- cancer therapy
- drug delivery
- cell therapy
- bone marrow
- data analysis
- deep learning