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新型选择性己糖激酶 2 抑制剂苯并尼苯甲酰胺通过靶向糖酵解来阻断癌细胞生长。

Novel selective hexokinase 2 inhibitor Benitrobenrazide blocks cancer cells growth by targeting glycolysis.

机构信息

Hubei Key Laboratory of Natural Medicinal Chemistry and Resource Evaluation, School of Pharmacy, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, People's Republic of China.

Wuya College of Innovation, Key Laboratory of Structure-Based Drug Design & Discovery, Ministry of Education, Shenyang Pharmaceutical University, Shenyang, 110016, People's Republic of China.

出版信息

Pharmacol Res. 2021 Feb;164:105367. doi: 10.1016/j.phrs.2020.105367. Epub 2020 Dec 8.

Abstract

Accelerated glucose metabolism is a common feature of cancer cells. Hexokinase 2 (HK2) as the rate-limiting enzyme catalyzes the first step of glucose metabolism. It is overexpressed in most of the human cancers and has been a promising target for cancer therapy. Here, we report a novel selective HK2 inhibitor Benitrobenrazide (BNBZ), with nanomolar inhibitory potency. In vitro, BNBZ directly binds to HK2, induces apoptosis, and inhibits proliferation of HK2-overexpressed cancer cells. BNBZ also significantly inhibits the glycolysis of SW1990 cells by targeting HK2. The knockdown or knockout of HK2 expression in SW1990 cells can reduce their sensitivity to BNBZ. Additionally, oral administration of BNBZ can effectively inhibit tumor growth in SW1990 and SW480 xenograft models. In general, BNBZ significantly inhibited glycolysis and cancer cell proliferation in vitro and in vivo by directly targeting HK2 with high potency and low toxicity, and can be developed as a novel HK2 small-molecule candidate drug for future cancer therapeutics.

摘要

葡萄糖代谢加速是癌细胞的一个共同特征。己糖激酶 2(HK2)作为限速酶,催化葡萄糖代谢的第一步。它在大多数人类癌症中过表达,已成为癌症治疗的一个有前途的靶点。在这里,我们报告了一种新型的选择性 HK2 抑制剂苯并噁唑甲酰胺(BNBZ),其具有纳摩尔抑制效力。在体外,BNBZ 直接与 HK2 结合,诱导细胞凋亡,并抑制 HK2 过表达癌细胞的增殖。BNBZ 还通过靶向 HK2 显著抑制 SW1990 细胞的糖酵解。SW1990 细胞中 HK2 的敲低或敲除可以降低它们对 BNBZ 的敏感性。此外,BNBZ 的口服给药可以有效地抑制 SW1990 和 SW480 异种移植模型中的肿瘤生长。总的来说,BNBZ 通过直接靶向 HK2 以高效力和低毒性显著抑制体外和体内的糖酵解和癌细胞增殖,可开发为用于未来癌症治疗的新型 HK2 小分子候选药物。

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