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Daurinol, a catalytic inhibitor of topoisomerase II alpha, suppresses SNU-840 ovarian cancer cell proliferation through cell cycle arrest in S phase

Authors
Kang, KyungsuNho, Chu WonKim, Nam DooSong, Dae-GeunPark, Young GyunKim, MinkyunPan, Cheol-HoShin, DongyunOh, Seung HyunOh, Ho-Suk
Issue Date
Aug-2014
Publisher
SPANDIDOS PUBL LTD
Keywords
daurinol; topoisomerase II alpha inhibitor; ovarian cancer; ATP binding pocket; secondary leukemia
Citation
INTERNATIONAL JOURNAL OF ONCOLOGY, v.45, no.2, pp.558 - 566
Journal Title
INTERNATIONAL JOURNAL OF ONCOLOGY
Volume
45
Number
2
Start Page
558
End Page
566
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/12411
DOI
10.3892/ijo.2014.2442
ISSN
1019-6439
Abstract
Daurinol, a lignan from the ethnopharmacological plant Haplophyllum dauricum, was recently reported to be a novel topoisomerase II inhibitor and an alternative to the clinical anticancer agent etoposide based on a colorectal cancer model. In the present study, we elucidated the detailed biochemical mechanism underlying the inhibition of human topoisomerase II alpha by daurinol based on a molecular docking study and in vitro biochemical experiments. The computational simulation predicted that daurinol binds to the ATP-binding pocket of topoisomerase Ha. In a biochemical assay, daurinol (10-100 mu M) inhibited the catalytic activity of topoisomerase Ha in an ATP concentration-dependent manner and suppressed the ATP hydrolysis activity of the enzyme. However, daurinol did not inhibit topoisomerase I activity, most likely because topoisomerase I does not contain an ATP-binding domain. We also evaluated the anti-proliferative activity of daurinol in ovarian, small cell lung and testicular cancer cells, common target cancers treated with etoposide. Daurinol potently inhibited SNU-840 human ovarian cancer cell proliferation through cell cycle arrest in S phase, while etoposide induced G2/M phase arrest. Daurinol induced the increased expression of cyclin E, cyclin A and E2F-1, which are important proteins regulating S phase initiation and progression. Daurinol did not induce abnormal cell and nuclear enlargement in SNU-840 cells, in contrast to etoposide. Based on these data, we suggest that daurinol is a potential anticancer drug candidate for the treatment of human ovarian cancer with few side effects.
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