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新型香豆素和喹啉酮基多环化合物作为细胞周期蛋白 25-A 和 -C 磷酸酶抑制剂,可诱导癌细胞增殖停滞和凋亡。

Novel coumarin- and quinolinone-based polycycles as cell division cycle 25-A and -C phosphatases inhibitors induce proliferation arrest and apoptosis in cancer cells.

机构信息

Department of Drug Chemistry and Technologies, Sapienza University of Rome, P. le A. Moro 5, 00185, Rome, Italy; Division of Bioorganic Chemistry, School of Pharmacy, Saarland State University, Campus, Bld. B2.1, 66123, Saarbrücken, Germany; Université de Lorraine, UMR CNRS 7565, Structure et Réactivité des Systèmes Moléculaires Complexes, Equipe 3 (HECRIN), 1 Boulevard Arago, 57078, Metz Technopôle, France.

Medical Biochemistry and Molecular Biology, Saarland University, 66421, Homburg/Saar, Germany; Division of Bioorganic Chemistry, School of Pharmacy, Saarland State University, Campus, Bld. B2.1, 66123, Saarbrücken, Germany.

出版信息

Eur J Med Chem. 2017 Jul 7;134:316-333. doi: 10.1016/j.ejmech.2017.04.012. Epub 2017 Apr 10.

Abstract

Cell division cycle phosphatases CDC25 A, B and C are involved in modulating cell cycle processes and are found overexpressed in a large panel of cancer typology. Here, we describe the development of two novel quinone-polycycle series of CDC25A and C inhibitors on the one hand 1a-k, coumarin-based, and on the other 2a-g, quinolinone-based, which inhibit either enzymes up to a sub-micro molar level and at single-digit micro molar concentrations, respectively. When tested in six different cancer cell lines, compound 2c displayed the highest efficacy to arrest cell viability, showing in almost all cell lines sub-micro molar IC values, a profile even better than the reference compound NCS95397. To investigate the putative binding mode of the inhibitors and to develop quantitative structure-activity relationships, molecular docking and 3-D QSAR studies were also carried out. Four selected inhibitors, 1a, 1d, 2a and 2c have been also tested in A431 cancer cells; among them, compound 2c was the most potent one leading to cell proliferation arrest and decreased CDC25C protein levels together with its splicing variant. Compound 2c displayed increased phosphorylation levels of histone H3, induction of PARP and caspase 3 cleavage, highlighting its contribution to cell death through pro-apoptotic effects.

摘要

细胞分裂周期磷酸酶 CDC25A、B 和 C 参与调节细胞周期过程,在大量癌症类型中过表达。在这里,我们描述了一方面基于香豆素的新型醌多环系列 CDC25A 和 C 抑制剂 1a-k 和另一方面基于喹啉酮的新型醌多环系列 CDC25A 和 C 抑制剂 2a-g 的开发,它们分别将酶抑制至亚微摩尔水平和个位数微摩尔浓度。在六种不同的癌细胞系中进行测试时,化合物 2c 显示出最高的抑制细胞活力的功效,在几乎所有细胞系中都显示出亚微摩尔 IC 值,其作用模式甚至优于参考化合物 NCS95397。为了研究抑制剂的可能结合模式并开发定量构效关系,还进行了分子对接和 3-D QSAR 研究。还测试了四种选定的抑制剂 1a、1d、2a 和 2c 在 A431 癌细胞中的作用;其中,化合物 2c 是最有效的一种,导致细胞增殖停滞和 CDC25C 蛋白水平及其剪接变体降低。化合物 2c 显示组蛋白 H3 的磷酸化水平增加,PARP 和 caspase 3 切割的诱导,突出了其通过促凋亡作用对细胞死亡的贡献。

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