textjournal article
Unprecedented Citrinin Trimer Tricitinol B Functions as a Novel Topoisomerase IIα Inhibitor
Abstract
Fifteen citrinin derivatives (1–4, 6–16), including two unprecedented citrinin trimers tricitrinols A (3) and B (4), were isolated from Penicillium citrinum HGY1–5. The six-membered ring A system is essential for the cytotoxicity of active dimers (1, 2, and 5) and trimers (3 and 4). Tricitrinol B (4) showed extensive cytotoxicity in 17 tumor cells with comparable low-micromolar IC50 values (1–10 μM) and potential antimultidrug resistance capabilities. Tricitrinol B (4) induced cell apoptosis in HL60 and HCT116 cells via mainly extrinsic pathways and G2/M arrest. Further antitumor mechanism study and computational docking analysis indicated that tricitrinol B (4) works as an intercalating topoisomerase IIα (topo IIα) poison, which inhibits the enzyme activity of topo IIα by interfering predominantly with the topo IIα-mediated poststrand-passage cleavage/religation equilibrium over with the prestrand-passage one and induced DNA damage. Tricitrinol B (4) represents a novel class of topo IIα-inhibitory skeletons for developing new chemotherapeutic agents- Text
- Journal contribution
- Biochemistry
- Microbiology
- Cell Biology
- Molecular Biology
- Pharmacology
- Immunology
- Developmental Biology
- Cancer
- Biological Sciences not elsewhere classified
- Chemical Sciences not elsewhere classified
- intercalating topoisomerase II α
- citrinin trimers tricitrinols
- enzyme activity
- antimultidrug resistance capabilities
- Unprecedented Citrinin Trimer Tricitinol B Functions
- extrinsic pathways
- antitumor mechanism study
- HL 60
- HCT 116 cells
- Tricitrinol
- DNA damage
- docking analysis
- chemotherapeutic agents
- 17 tumor cells
- HGY
- novel class
- cell apoptosis
- topo II α
- IC