Department of Microbiology and Immunology, Montana State University, Bozeman, MT, 59717, USA.
A.V. Bogatsky Physico-Chemical Institute, National Academy of Sciences of Ukraine, Odessa, 65080, Ukraine.
Eur J Med Chem. 2019 Dec 1;183:111719. doi: 10.1016/j.ejmech.2019.111719. Epub 2019 Sep 18.
Cell division cycle 25 (Cdc25) and mitogen-activated protein kinase kinase 7 (MKK7) are enzymes involved in intracellular signaling but can also contribute to tumorigenesis. We synthesized and characterized the biological activity of 1,4-naphthoquinones structurally similar to reported Cdc25 and(or) MKK7 inhibitors with anticancer activity. Compound 7 (3-[(1,4-dioxonaphthalen-2-yl)sulfanyl]propanoic acid) exhibited high binding affinity for MKK7 (K = 230 nM), which was greater than the affinity of NSC 95397 (K = 1.1 μM). Although plumbagin had a lower binding affinity for MKK7, this compound and sulfur-containing derivatives 4 and 6-8 were potent inhibitors of Cdc25A and Cdc25B. Derivative 22e containing a phenylamino side chain was selective for MKK7 versus MKK4 and Cdc25 A/B, and its isomer 22f was a selective inhibitor of Cdc25 A/B. Docking studies performed on several naphthoquinones highlighted interesting aspects concerning the molecule orientation and hydrogen bonding interactions, which could help to explain the activity of the compounds toward MKK7 and Cdc25B. The most potent naphthoquinone-based inhibitors of MKK7 and/or Cdc25 A/B were also screened for their cytotoxicity against nine cancer cell lines and primary human mononuclear cells, and a correlation was found between Cdc25 A/B inhibitory activity and cytotoxicity of the compounds. Quantum chemical calculations using BP86 and ωB97X-D3 functionals were performed on 20 naphthoquinone derivatives to obtain a set of molecular electronic properties and to correlate these properties with cytotoxic activities. Systematic theoretical DFT calculations with subsequent correlation analysis indicated that energy of the lowest unoccupied molecular orbital E(LUMO), vertical electron affinity (VEA), and reactivity index ω of these molecules were important characteristics related to their cytotoxicity. The reactivity index ω was also a key characteristic related to Cdc25 A/B phosphatase inhibitory activity. Thus, 1,4-naphthoquinones displaying sulfur-containing and phenylamino side chains with additional polar groups could be successfully utilized for further development of efficacious Cdc25 A/B and MKK7 inhibitors with anticancer activity.
细胞分裂周期 25(Cdc25)和丝裂原激活的蛋白激酶激酶 7(MKK7)是参与细胞内信号转导的酶,但也有助于肿瘤发生。我们合成并表征了具有抗癌活性的结构类似于报道的 Cdc25 和(或)MKK7 抑制剂的 1,4-萘醌。化合物 7(3-[(1,4-二氧代萘-2-基)硫基]丙酸酸)对 MKK7 具有高结合亲和力(K=230nM),大于 NSC 95397(K=1.1μM)的亲和力。虽然白花丹醌对 MKK7 的结合亲和力较低,但该化合物和含硫衍生物 4、6-8 是 Cdc25A 和 Cdc25B 的有效抑制剂。含苯氨基侧链的衍生物 22e 对 MKK7 相对于 MKK4 和 Cdc25A/B 具有选择性,其异构体 22f 是 Cdc25A/B 的选择性抑制剂。对几种萘醌进行的对接研究突出了分子取向和氢键相互作用的有趣方面,这有助于解释化合物对 MKK7 和 Cdc25B 的活性。对 MKK7 和/或 Cdc25A/B 抑制活性最强的萘醌类化合物也在 9 种癌细胞系和原代人单核细胞中进行了细胞毒性筛选,并发现化合物的 Cdc25A/B 抑制活性与细胞毒性之间存在相关性。使用 BP86 和 ωB97X-D3 函数对 20 种萘醌衍生物进行量子化学计算,以获得一组分子电子性质,并将这些性质与细胞毒性活性相关联。系统的理论 DFT 计算和随后的相关分析表明,这些分子的最低未占据分子轨道能量 E(LUMO)、垂直电子亲合能(VEA)和反应性指数ω是与其细胞毒性相关的重要特征。反应性指数ω也是与 Cdc25A/B 磷酸酶抑制活性相关的关键特征。因此,具有含硫和苯氨基侧链以及其他极性基团的 1,4-萘醌可成功用于进一步开发具有抗癌活性的有效 Cdc25A/B 和 MKK7 抑制剂。