N-arachidonoyl dopamine inhibits epithelial-mesenchymal transition of breast cancer cells through ERK signaling and decreasing the cellular cholesterol.
Shreetama BandyopadhayayaMikhail G AkimovRanjeet VermaAnkit SharmaDivya SharmaGopal C KunduNatalia M GretskayaVladimir V BezuglovChandi C MandalPublished in: Journal of biochemical and molecular toxicology (2021)
N-acyl dopamines (NADAs) are bioactive lipids of the endovanilloid family with known cytotoxicity for the cancer cells; however, the available data on the participation of the endovanilloids in epithelial-mesenchymal transition (EMT) and cancer stemness are controversial. This study unveils the inhibitory role of N-arachidonoyl dopamine (AA-DA), a typical representative of the NADA family, in breast cancer cell migration, EMT, and stemness. AA-DA treatment also led to a decrease in cholesterol biosynthesis gene expressions, and addition of exogenous cholesterol reverted these AA-DA-mediated inhibitory effects. Notably, AA-DA treatment inhibited the key regulatory gene of the cholesterol biosynthesis pathway, sterol regulatory element-binding protein 1 (SREBP1), with concurrent repression of the endoplasmic reticulum kinase 1/2 (ERK1/2) pathway. Furthermore, U0126, an ERK inhibitor, inhibited SREBP1 and decreased cellular cholesterol level, unwinding the molecular mechanism behind AA-DA-mediated anticancer activity. Thus, we, for the first time, revealed that AA-DA counteracts breast cancer EMT via inhibition of ERK signaling and cholesterol content.
Keyphrases
- epithelial mesenchymal transition
- signaling pathway
- low density lipoprotein
- transforming growth factor
- pi k akt
- cell proliferation
- cell migration
- endoplasmic reticulum
- stem cells
- binding protein
- breast cancer cells
- transcription factor
- physical activity
- machine learning
- genome wide
- squamous cell carcinoma
- radiation therapy
- electronic health record
- rectal cancer
- cell wall
- locally advanced
- protein kinase
- young adults
- cross sectional
- genome wide analysis