| Literature DB >> 31479984 |
Le Cong Huan1, Phuong-Thao Tran2, Cao Viet Phuong2, Phan Huy Duc2, Duong Tien Anh2, Pham The Hai2, Le Thi Thu Huong3, Nguyen Thi Thuan2, Hye Jin Lee4, Eun Jae Park4, Jong Soon Kang5, Nguyen Phuong Linh6, Tran Trung Hieu6, Dao Thi Kim Oanh2, Sang-Bae Han7, Nguyen-Hai Nam8.
Abstract
In search for novel small molecules with antitumor cytotoxicity via activating procaspase-3, we have designed and synthesized three series of novel (E)-N'-benzylidene-4-oxoquinazolin-3(4H)-yl)acetohydrazides (5a-j, 6a-h, and 7a-h). On the phenyl ring ò the benzylidene part, three different substituents, including 2-OH-4-OCH3, 4-OCH3, and 4-N(CH3)2, were introduced, respectively. Biological evaluation showed that the acetohydrazides in series 5a-j, in which the phenyl ring of the benzylidene part was substituted by 2-OH-4-OCH3 substituent, exhibited potent cytotoxicity against three human cancer cell lines (SW620, colon; PC-3, prostate; NCI-H23, lung). Most of the compounds, in this series, especially compounds 5c, 5b and 5h, also significantly activated caspase-3 activity. Among these, compound 5c displayed 1.61-fold more potent than PAC-1 as caspase-3 activator. Cell cycle analysis showed that compounds 5b, 5c, and 5h significantly arrested the cell cycle in G1 phase. Further apoptotic studies also demonstrated compounds 5b, 5c, and 5h as strong apoptotic cell death inducers. The docking simulation studies showed that these compounds could activate procaspase via chelating Zn2+ ion bound to the allosteric site of the zymogen.Entities:
Keywords: Acetohydrazides; Apoptotic inducers; Caspase activation; Cytotoxicity; Quinazolin-4(3H)-one
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Year: 2019 PMID: 31479984 DOI: 10.1016/j.bioorg.2019.103202
Source DB: PubMed Journal: Bioorg Chem ISSN: 0045-2068 Impact factor: 5.275