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STK295900, a Dual Inhibitor of Topoisomerase 1 and 2, Induces G<inf>2</inf> Arrest in the Absence of DNA Damage
Authors
A Balmain
A Satyanarayana
+56 more
AK Larsen
AW Murray
AY Chen
B Clifford
B Narasimhan
Bo Yeon Kim
BY Kim
CC Chiu
CS Downes
DR Kellogg
DV Bulavin
EA Nigg
EP Rogakou
F Foijer
F Hans
H van Attikum
J Bartek
J Bonnet
J Mann
J Pines
J Rudolph
Jae-Hyuk Jang
JH Trembley
Jian-Ting Zhang
JJ Bower
JJ Champoux
JL Nitiss
Jong Seog Ahn
K Kristjansdottir
K Uto
Krisada Sakchaisri
Kyung Sang Lee
L Antoni
L He
MA Jordan
Nak Kyun Soung
PA Futreal
Raymond Leo Erikson
RT Abraham
S Jin
S Patel
SM Vos
Sun-Ok Kim
Thimmegowda N. R.
VA Smits
WM Bonner
WR Taylor
X Cai
Y Pommier
Y Shiloh
Y Wei
YH Hsiang
Yong Tae Kwon
Young Sang Kim
YP Tsao
Yukihiro Asami
Publication date
1 January 2013
Publisher
'Public Library of Science (PLoS)'
Doi
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on
PubMed
Abstract
STK295900, a small synthetic molecule belonging to a class of symmetric bibenzimidazoles, exhibits antiproliferative activity against various human cancer cell lines from different origins. Examining the effect of STK295900 in HeLa cells indicates that it induces G2 phase arrest without invoking DNA damage. Further analysis shows that STK295900 inhibits DNA relaxation that is mediated by topoisomerase 1 (Top 1) and topoisomerase 2 (Top 2) in vitro. In addition, STK295900 also exhibits protective effect against DNA damage induced by camptothecin. However, STK295900 does not affect etoposide-induced DNA damage. Moreover, STK295900 preferentially exerts cytotoxic effect on cancer cell lines while camptothecin, etoposide, and Hoechst 33342 affected both cancer and normal cells. Therefore, STK295900 has a potential to be developed as an anticancer chemotherapeutic agent. © 2013 Kim et al
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