Department of Chemistry "Ugo Schiff", University of Florence, Via della Lastruccia 3, 50019 Florence, Italy.
Molecules. 2023 Jul 4;28(13):5196. doi: 10.3390/molecules28135196.
Gold compounds form a new class of promising anticancer agents with innovative modes of action. It is generally believed that anticancer gold compounds, at variance with clinically established platinum drugs, preferentially target proteins rather than nucleic acids. The reactions of several gold compounds with a few model proteins have been systematically explored in recent years through ESI MS measurements to reveal adduct formation and identify the main features of those reactions. Here, we focus our attention on a group of five gold compounds of remarkable medicinal interest, i.e., Auranofin, Au(NHC)Cl, [Au(NHC)]PF, Aubipyc, and Auoxo6, and on their reactions with four different biomolecular targets, i.e., the proteins HEWL, hCA I, HSA and the C-terminal dodecapeptide of the enzyme thioredoxin reductase. Complete ESI MS data are available for those reactions due to previous experimental work conducted in our laboratory. From the comparative analysis of the ESI MS reaction profiles, some characteristic trends in the metallodrug-protein reactivity may be identified as detailed below. The main features are described and analyzed in this review. Overall, all these observations are broadly consistent with the concept that cytotoxic gold drugs preferentially target cancer cell proteins, with a remarkable selectivity for the cysteine and selenocysteine proteome. These interactions typically result in severe damage to cancer cell metabolism and profound alterations in the redox state, leading to eventual cancer cell death.
金化合物形成了一类具有创新作用模式的有前途的抗癌药物。人们普遍认为,与临床应用的铂类药物不同,抗癌金化合物优先靶向蛋白质而不是核酸。近年来,通过 ESI-MS 测量系统地研究了几种金化合物与一些模型蛋白的反应,以揭示加合物的形成并确定这些反应的主要特征。在这里,我们将注意力集中在一组具有显著医学意义的五种金化合物上,即金诺芬、Au(NHC)Cl、[Au(NHC)]PF、Aubipyc 和 Auoxo6,以及它们与四个不同生物分子靶标的反应,即 HEWL、hCA I、HSA 和酶硫氧还蛋白还原酶的 C 端十二肽。由于我们实验室之前进行的实验工作,这些反应都有完整的 ESI-MS 数据。通过对 ESI-MS 反应谱的比较分析,可以确定一些特征性的金属药物-蛋白质反应趋势,如下所述。本文对这些主要特征进行了描述和分析。总的来说,所有这些观察结果都与细胞毒性金药物优先靶向癌细胞蛋白的概念基本一致,对半胱氨酸和硒代半胱氨酸蛋白质组具有显著的选择性。这些相互作用通常导致癌细胞代谢严重受损和氧化还原状态的深刻改变,最终导致癌细胞死亡。