Jozimine A 2 , a Dimeric Naphthylisoquinoline (NIQ) Alkaloid, Shows In Vitro Cytotoxic Effects against Leukemia Cells through NF-κB Inhibition.
Roxana DamiescuRümeysa YücerSabine M KlauckGerhard BringmannThomas EfferthMona DawoodPublished in: International journal of molecular sciences (2024)
Naphthylisoquinoline (NIQ) alkaloids are rising as a promising class of secondary metabolites with pharmaceutical potential. NF-κB has already been recognized as a significant modulator of cancer proliferation and drug resistance. We have previously reported the mechanisms behind the cytotoxic effect of dioncophylline A, an NIQ monomer, in leukemia cells. In the current study, we have investigated the cytotoxic effect of jozimine A 2 , an NIQ dimer, on leukemia cells in comparison to a second, structurally unsymmetric dimer, michellamine B. To this end, molecular docking was applied to predict the binding affinity of the dimers towards NF-κB, which was then validated through microscale thermophoresis. Next, cytotoxicity assays were performed on CCRF-CEM cells and multidrug-resistant CEM/ADR5000 cells following treatment. Transcriptome analysis uncovered the molecular networks affected by jozimine A 2 and identified the cell cycle as one of the major affected processes. Cell death modes were evaluated through flow cytometry, while angiogenesis was measured with the endothelial cell tube formation assay on human umbilical vein endothelial cells (HUVECs). The results indicated that jozimine A 2 bound to NF-κB, inhibited its activity and prevented its translocation to the nucleus. In addition, jozimine A 2 induced cell death through apoptosis and prevented angiogenesis. Our study describes the cytotoxic effect of jozimine A 2 on leukemia cells and explains the interactions with the NF-κB signaling pathway and the anticancer activity.
Keyphrases
- cell cycle arrest
- signaling pathway
- induced apoptosis
- pi k akt
- cell death
- endothelial cells
- oxidative stress
- endoplasmic reticulum stress
- cell cycle
- multidrug resistant
- molecular docking
- acute myeloid leukemia
- cell proliferation
- lps induced
- emergency department
- escherichia coli
- drug resistant
- immune response
- high throughput
- epithelial mesenchymal transition
- flow cytometry
- acinetobacter baumannii
- high resolution
- transcription factor
- ms ms
- adverse drug
- young adults
- tandem mass spectrometry
- simultaneous determination
- papillary thyroid