UM  > Faculty of Health Sciences  > DEPARTMENT OF PHARMACEUTICAL SCIENCES
Residential Collegefalse
Status已發表Published
Cucurbitacin B induced ATM-mediated DNA damage causes G2/M cell cycle arrest in a ROS-dependent manner
Jiajie Guo; Guosheng Wu; Jiaolin Bao; Wenhui Hao; Jinjian Lu; Xiuping Chen
2014
Source PublicationPLoS ONE
ISSN19326203
Volume9Issue:2
Abstract

Cucurbitacins are a class of triterpenoids widely distributed in plant kingdom with potent anti-cancer activities both in vitro and in vivo by inducing cycle arrest, autophagy, and apoptosis. Cucurbitacin B (Cuc B), could induce S or G2/M cell cycle arrest in cancer cells while the detailed mechanisms remain to be clear. This study was designed to precisely dissect the signaling pathway(s) responsible for Cuc B induced cell cycle arrest in human lung adenocarcinoma epithelial A549 cells. We demonstrated that low concentrations of Cuc B dramatically induced G2/M phase arrest in A549 cells. Cuc B treatment caused DNA double-strand breaks (DSBs) without affecting the signal transducer and activator of transcription 3 (STAT3), the potential molecular target for Cuc B. Cuc B triggers ATM-activated Chk1-Cdc25C-Cdk1, which could be reversed by both ATM siRNA and Chk1 siRNA. Cuc B also triggers ATM-activated p53-14-3-3-σ pathways, which could be reversed by ATM siRNA. Cuc B treatment also led to increased intracellular reactive oxygen species (ROS) formation, which was inhibited by N-acetyl-l-cysteine (NAC) pretreatment. Furthermore, NAC pretreatment inhibited Cuc B induced DNA damage and G2/M phase arrest. Taken together, these results suggested that Cuc B induces DNA damage in A549 cells mediated by increasing intracellular ROS formation, which lead to G2/M cell phase arrest through ATM-activated Chk1-Cdc25C-Cdk1 and p53-14-3-3-σ parallel branches. These observations provide novel mechanisms and potential targets for better understanding of the anti-cancer mechanisms of cucurbitacins. © 2014 Guo et al.

KeywordCell Death Ros Cucurbitacin Chinese Medicine
DOI10.1371/journal.pone.0088140
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaScience & Technology - Other Topics
WOS SubjectMultidisciplinary Sciences
WOS IDWOS:000336971300058
The Source to ArticleScopus
Scopus ID2-s2.0-84894615299
Fulltext Access
Citation statistics
Document TypeJournal article
CollectionDEPARTMENT OF PHARMACEUTICAL SCIENCES
Institute of Chinese Medical Sciences
THE STATE KEY LABORATORY OF QUALITY RESEARCH IN CHINESE MEDICINE (UNIVERSITY OF MACAU)
Corresponding AuthorXiuping Chen
AffiliationState Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences, University of Macau, Macao, China
First Author AffilicationInstitute of Chinese Medical Sciences
Corresponding Author AffilicationInstitute of Chinese Medical Sciences
Recommended Citation
GB/T 7714
Jiajie Guo,Guosheng Wu,Jiaolin Bao,et al. Cucurbitacin B induced ATM-mediated DNA damage causes G2/M cell cycle arrest in a ROS-dependent manner[J]. PLoS ONE, 2014, 9(2).
APA Jiajie Guo., Guosheng Wu., Jiaolin Bao., Wenhui Hao., Jinjian Lu., & Xiuping Chen (2014). Cucurbitacin B induced ATM-mediated DNA damage causes G2/M cell cycle arrest in a ROS-dependent manner. PLoS ONE, 9(2).
MLA Jiajie Guo,et al."Cucurbitacin B induced ATM-mediated DNA damage causes G2/M cell cycle arrest in a ROS-dependent manner".PLoS ONE 9.2(2014).
Files in This Item:
There are no files associated with this item.
Related Services
Recommend this item
Bookmark
Usage statistics
Export to Endnote
Google Scholar
Similar articles in Google Scholar
[Jiajie Guo]'s Articles
[Guosheng Wu]'s Articles
[Jiaolin Bao]'s Articles
Baidu academic
Similar articles in Baidu academic
[Jiajie Guo]'s Articles
[Guosheng Wu]'s Articles
[Jiaolin Bao]'s Articles
Bing Scholar
Similar articles in Bing Scholar
[Jiajie Guo]'s Articles
[Guosheng Wu]'s Articles
[Jiaolin Bao]'s Articles
Terms of Use
No data!
Social Bookmark/Share
All comments (0)
No comment.
 

Items in the repository are protected by copyright, with all rights reserved, unless otherwise indicated.