Medicine College of Pingdingshan University, Pingdingshan, Henan 467000, China.
Medicine College of Pingdingshan University, Pingdingshan, Henan 467000, China.
J Inorg Biochem. 2022 Jul;232:111816. doi: 10.1016/j.jinorgbio.2022.111816. Epub 2022 Apr 6.
Topoisomerase (Topo) accelerates cell growth and division, and has been a theoretical target for anti-cancer drugs for decades. A series of pyridoxal thiosemicarbazone (PLT) ligands were designed and synthesized, and the dependence of their antiproliferative activity on copper was investigated. The insertion of N-cyclohexyl-2-((3-hydroxy-5-(hydroxymethyl)-2-methylpyridin-4-yl)methylene)-N-methylhydrazinecarbothioamide hydrochloride (compound 9) and Chlorido(N-cyclohexyl-2-((3-hydroxy-5-(hydroxymethyl)-2-methylpyridin-4-yl)methylene)-N-methylhydrazinecarbothioamide hydrochloride-O,N,S)‑copper(II) nitrate (9-Cu complex) into Topo-I and Topo-II prevented uncoiling of DNA through hydrogen bonds and intermolecular forces. The combination of PLT derivatives and copper gluconate (CuGlu) improved their anti-tumour activity against a cell line with high expression of topoisomerase (SK-BR-3). The non-linear regression equations of the inhibitory activity and anti-tumour activity of Topo-I and Topo-IIɑ in SK-BR-3 cells had R values of 0.93 and 0.94, respectively. In addition to lipophilicity, inhibition of topoisomerase also affected the activity of PLT ligands by coordinating with copper ions. At the cellular level, PLTs and CuGlu penetrate the cell membrane to form metabolites in the cell, thus selectively inhibiting the activity of Topo-I and Topo-IIɑ, and ultimately inhibiting cell division. These findings will inform the design of future anti-cancer thiosemicarbazone drugs.
拓扑异构酶(Topo)可加速细胞生长和分裂,几十年来一直是抗癌药物的理论靶点。设计并合成了一系列吡哆醛缩氨硫脲(PLT)配体,并研究了它们的增殖活性对铜的依赖性。插入 N-环己基-2-((3-羟基-5-(羟甲基)-2-甲基吡啶-4-基)亚甲基)-N-甲基肼甲硫酰胺盐酸盐(化合物 9)和氯代(N-环己基-2-((3-羟基-5-(羟甲基)-2-甲基吡啶-4-基)亚甲基)-N-甲基肼甲硫酰胺盐酸盐-O,N,S)‑铜(II)硝酸盐(9-Cu 配合物)到拓扑异构酶-I 和拓扑异构酶-II 中,通过氢键和分子间力阻止 DNA 解旋。PLT 衍生物与葡萄糖酸铜(CuGlu)结合提高了它们对拓扑异构酶高表达细胞系(SK-BR-3)的抗肿瘤活性。SK-BR-3 细胞中 Topo-I 和 Topo-IIɑ 的抑制活性和抗肿瘤活性的非线性回归方程的 R 值分别为 0.93 和 0.94。除了亲脂性之外,与铜离子的配位也会影响拓扑异构酶抑制剂的活性。在细胞水平上,PLTs 和 CuGlu 穿透细胞膜在细胞内形成代谢物,从而选择性抑制 Topo-I 和 Topo-IIɑ 的活性,最终抑制细胞分裂。这些发现将为未来的抗癌缩氨硫脲药物设计提供信息。