化学
硫氧还蛋白还原酶
黄腐酚
细胞毒性
查尔酮
硒蛋白
赫拉
活性氧
生物化学
结构-活动关系
硫氧还蛋白
药理学
立体化学
酶
体外
谷胱甘肽过氧化物酶
谷胱甘肽
生物
医学
钥匙(锁)
生态学
作者
Baoxin Zhang,Dongzhu Duan,Chunpo Ge,Juan Yao,Yaping Liu,Xinming Li,Jianguo Fang
摘要
The selenoprotein thioredoxin reductases (TrxRs) are attractive targets for anticancer drugs development. Xanthohumol (Xn), a naturally occurring polyphenol chalcone from hops, has received increasing attention because of its multiple pharmacological activities. We synthesized Xn and its 43 analogues and discovered that compound 13n displayed the highest cytotoxicity toward HeLa cells (IC50 = 1.4 μM). Structure–activity relationship study indicates that the prenyl group is not necessary for cytotoxicity, and introducing electron-withdrawing group, especially on the meta-position, is favored. In addition, methylation of the phenoxyl groups generally improves the potency. Mechanistic study revealed that 13n selectively inhibits TrxR and induces reactive oxygen species and apoptosis in HeLa cells. Cells overexpressing TrxR are resistant to 13n insult, while knockdown of TrxR sensitizes cells to 13n treatment, highlighting the physiological significance of targeting TrxR by 13n. The clarification of the structural determinants for the potency would guide the design of novel potent molecules for future development.
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