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Curcusone C induces telomeric DNA-damage response in cancer cells through inhibition of telomeric repeat factor 2.

Authors :
Wang, Mingxue
Cao, Jiaojiao
Zhu, Jian-Yong
Qiu, Jun
Zhang, Yan
Shu, Bing
Ou, Tian-Miao
Tan, Jia-Heng
Gu, Lian-Quan
Huang, Zhi-Shu
Yin, Sheng
Li, Ding
Source :
BBA - Proteins & Proteomics. Nov2017 Part A, Vol. 1865 Issue 11A, p1372-1382. 11p.
Publication Year :
2017

Abstract

Telomeric repeat factor 2 (known as TRF2 or TERF2) is a key component of telomere protection protein complex named as Shelterin. TRF2 helps the folding of telomere to form T-loop structure and the suppression of ATM-dependent DNA damage response activation. TRF2 has been recognized as a potentially new therapeutic target for cancer treatment. In our routine screening of small molecule libraries, we found that Curcusone C had significant effect in disrupting the binding between TRF2 and telomeric DNA, with potent antitumor activity against cancer cells. Our result showed that Curcusone C could bind with TRF2 without binding interaction with TRF1 (telomeric repeat factor 1) although these two proteins share high sequence homology, indicating that their binding conformations and biological functions in telomere could be different. Our mechanistic studies showed that Curcusone C bound with TRF2 possibly through its DNA binding site causing blockage of its interaction with telomeric DNA. Further in cellular studies indicated that the interaction of TRF2 with Curcusone C could activate DNA-damage response, inhibit tumor cell proliferation, and cause cell cycle arrest, resulting in tumor cell apoptosis. Our studies showed that Curcusone C could become a promising lead compound for further development for cancer treatment. Here, TRF2 was firstly identified as a target of Curcusone C. It is likely that the anti-cancer activity of some other terpenes and terpenoids are related with their possible effect for telomere protection proteins. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15709639
Volume :
1865
Issue :
11A
Database :
Academic Search Index
Journal :
BBA - Proteins & Proteomics
Publication Type :
Academic Journal
Accession number :
125313507
Full Text :
https://doi.org/10.1016/j.bbapap.2017.08.022