Bioorganic Chemistry, volume 139, pages 106727

Discovery of novel 2-(trifluoromethyl)quinolin-4-amine derivatives as potent antitumor agents with microtubule polymerization inhibitory activity

Kun Liu 1, 2
Min Mo 1, 2
Gang Yu 1, 2
Jia Yu 1, 2
Shan-min Song 3
Sha Cheng 1, 2
Huimin Li 1, 2
Xue-ling Meng 1, 2
Xiaoping Zeng 1, 2
Guanglin Xu 1, 2
Heng Luo 1, 2
Bi-Xue Xu 1, 2
Show full list: 12 authors
2
 
The Key Laboratory of Chemistry for Natural Products of Guizhou Province and Academy of Sciences/Guizhou Provincial Engineering Research Center for Natural Drugs, Guiyang 550014, China
3
 
Department of Food and Medicine, Guizhou Vocational College of Agriculture, Qingzhen 551400, China
Publication typeJournal Article
Publication date2023-10-01
scimago Q1
wos Q1
SJR0.745
CiteScore9.7
Impact factor4.5
ISSN00452068, 10902120
Organic Chemistry
Drug Discovery
Biochemistry
Molecular Biology
Abstract
In this work, a series of 2-(trifluoromethyl)quinolin-4-amine derivatives were designed and synthesized through structural optimization strategy as a microtubule-targeted agents (MTAs) and their cytotoxicity activity against PC3, K562 and HeLa cell lines were evaluated. The half maximal inhibitory concentration (IC50) of 5e, 5f, and 5o suggested that their potency of anti-proliferative activities against HeLa cell lines were better than the combretastatin A-4. Compound 5e showed the higher anti-proliferative activity against PC3, K562 and HeLa in vitro with IC50 values of 0.49 µM, 0.08 µM and 0.01 µM, respectively. Further mechanism study indicated that the representative compound 5e was new class of tubulin inhibitors by EBI competition assay and tubulin polymerization assays, it is similar to colchicine. Immunofluorescence staining revealed that compound 5e apparently disrupted tubulin network in HeLa cells, and compound 5e arrested HeLa cells at the G2/M phase and induced cells apoptosis in a dose-dependent manner. Molecular docking results illustrated that the hydrogen bonds of represented compounds reinforced the interactions in the pocket of colchicine binding site. Preliminary results suggested that 5e deserves further research as a promising tubulin inhibitor for the development of anticancer agents.

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