CAS Key Laboratory of Soft Matter Chemistry, Department of Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, China.
Metallomics. 2019 Mar 20;11(3):556-564. doi: 10.1039/c8mt00358k.
Cisplatin is an anticancer drug widely used in clinics; it induces the apoptosis of cancer cells by targeting DNA. However, its interaction with proteins has been found to be crucial in modulating the pre and post-target activity. Nuclear DNA is tightly assembled with histone proteins to form nucleosomes in chromatin; this can impede the drug to access DNA. On the other hand, the linker histone H1 is considered 'the gate to nucleosomal DNA' due to its exposed location and dynamic conformation; therefore, this protein can influence the platination of DNA. In this study, we performed a reaction of cisplatin with histone H1 and investigated the interaction of the H1/cisplatin adduct with DNA. The reactions were conducted on the N-terminal domains of H1.4 (sequence 1-90, H1N90) and H1.0 (sequence 1-7, H1N7). The results show that H1 readily reacts with cisplatin and generates bidentate and tridentate adducts, with methionine and glutamate residues as the preferential binding sites. Chromatographic and NMR analyses show that the platination rate of H1 is slightly higher than that of DNA and the platinated H1 can form H1-cisplatin-DNA ternary complexes. Interestingly, cisplatin is more prone to form H1-Pt-DNA ternary complexes than trans-oriented platinum agents. The formation of H1-cisplatin-DNA ternary complexes and their preference for cis- over trans-oriented platinum agents suggest an important role of histone H1 in the mechanism of action of cisplatin.
顺铂是一种广泛应用于临床的抗癌药物,它通过靶向 DNA 诱导癌细胞凋亡。然而,它与蛋白质的相互作用被发现对调节靶前和靶后活性至关重要。核 DNA 与组蛋白紧密组装形成染色质中的核小体;这会阻碍药物与 DNA 接触。另一方面,连接组蛋白 H1 因其暴露的位置和动态构象而被认为是“核小体 DNA 的大门”;因此,这种蛋白质可以影响 DNA 的铂化。在这项研究中,我们进行了顺铂与组蛋白 H1 的反应,并研究了 H1/顺铂加合物与 DNA 的相互作用。反应在 H1.4(序列 1-90,H1N90)和 H1.0(序列 1-7,H1N7)的 N 端结构域上进行。结果表明,H1 很容易与顺铂反应,并生成双齿和三齿加合物,甲硫氨酸和谷氨酸残基是优先结合位点。色谱和 NMR 分析表明,H1 的铂化率略高于 DNA,并且铂化的 H1 可以形成 H1-顺铂-DNA 三元复合物。有趣的是,与反式铂类药物相比,顺铂更容易形成 H1-Pt-DNA 三元复合物。H1-顺铂-DNA 三元复合物的形成及其对顺式铂类药物的偏好表明组蛋白 H1 在顺铂作用机制中具有重要作用。