Design, synthesis and in vitro/in vivo anticancer activity of tranylcypromine-based triazolopyrimidine analogs as novel LSD1 inhibitors

曲安奈普罗明 化学 体内 药理学 脱甲基酶 体外 组蛋白 去甲基化 生物化学 赖氨酸 癌症研究 生物 氨基酸 基因表达 基因 生物技术 DNA甲基化 单胺氧化酶
作者
Zhonghua Li,Yong Yuan,Pan Wang,Zijuan Zhang,Huifen Ma,Yiran Sun,Xiaowei Zhang,Xiaofang Li,Yonghui Qiao,Feiyu Zhang,Yunfang Su,Junying Song,Zhishen Xie,Lixin Li,Liying Ma,Jinlian Ma,Zhenqiang Zhang
出处
期刊:European journal of medicinal chemistry [Elsevier BV]
卷期号:253: 115321-115321 被引量:7
标识
DOI:10.1016/j.ejmech.2023.115321
摘要

Histone lysine specific demethylase 1 (LSD1) is responsible for the demethylation of mono-/dimethylated lysine residue on histone proteins. LSD1 plays an extensive and essential role in the pathogenesis and progression of many human diseases such as cancers, and thus is becoming an attractive therapeutic target for cancer treatment. Tranylcypromine (TCP) is an important chemical template for developing irreversible LSD1 inhibitors, representing a major chemotype of clinical candidates. Here we report a novel pool of TCP derivatives with triazolopyrimidine as a privileged heterocylic motif. Starting from ticagrelor, a clinically available antiplatelet agent, as a hit compound, our medicinal efforts have led to the identification of compound 9j with nanomolar inhibitory potency against LSD1 as well as broad-spectrum antiproliferative activities against tumor cells. Enzyme studies show that compound 9j is selective over MAO-A/B enzymes, and also cellular active to elevate the expression of H3K4me2 by inhibiting LSD1 in cells. Furthermore, in a H1650 xenograft mouse model, oral administration of compound 9j at low 10 and 20 mg/kg dosages could enable a significant reduction in tumor size and a remarkable extension of survival. The current work is expected to provide an additional strategy to achieve new TCP-based LSD1 inhibitors.
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