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新型噻唑-腙-香豆素杂合体靶向人宫颈癌细胞:合成、CDK2 抑制、QSAR 和分子对接研究。

New thiazol-hydrazono-coumarin hybrids targeting human cervical cancer cells: Synthesis, CDK2 inhibition, QSAR and molecular docking studies.

机构信息

Therapeutical Chemistry Department, National Research Centre, Dokki, Cairo, P. O. Box 12622, Egypt.

Therapeutical Chemistry Department, National Research Centre, Dokki, Cairo, P. O. Box 12622, Egypt.

出版信息

Bioorg Chem. 2019 May;86:80-96. doi: 10.1016/j.bioorg.2019.01.026. Epub 2019 Jan 19.

Abstract

Motivated by the potential anticancer activity of both coumarin and 2-aminothiazole nuclei, a new set of thiazol-2-yl hydrazono-chromen-2-one analogs were efficiently synthesized aiming to obtain novel hybrids with potential cytotoxic activity. MTT assay investigated the significant potency of all the target compounds against the human cervical cancer cell lines (HeLa cells). Cell cycle analysis showed that the representative compound 8a led to cell cycle cessation at G0/G1 phase indicating that CDK2/E1complex could be the plausible biological target for these newly synthesized compounds. Thus, the most active compounds (7c and 8a-c) were tested for their CDK2 inhibitory activity. The biological results revealed their significant CDK2 inhibitory activity with IC range of 0.022-1.629 nM. Moreover, RT-PCR gene expression assay showed that compound 8a increased the levels of the nuclear CDK2 regulators P21 and P27 by 2.30 and 5.7 folds, respectively. ELISA tequnique showed also that compound 8a led to remarkable activation of caspases-9 and -3 inducing cell apoptosis. QSAR study showed that the charge distribution and molecular hydrophobicity are the structural features affecting cytotoxic activity in this series. Molecular docking study for the most potent cytotoxic compounds (7c and 8a-c) rationalized their superior CDK2 inhibitory activity through their hydrogen bonding and hydrophobic interactions with the key amino acids in the CDK2 binding site. Pharmacokinetic properties prediction of the most potent compounds showed that the newly synthesized compounds are not only with promising antitumor activity but also possess promising pharmacokinetic properties.

摘要

受香豆素和 2-氨基噻唑核的潜在抗癌活性的启发,我们设计并合成了一系列新型噻唑-2-基腙-色烯-2-酮类似物,旨在获得具有潜在细胞毒性活性的新型杂合体。MTT 试验研究了所有目标化合物对人宫颈癌(HeLa 细胞)的显著细胞毒性。细胞周期分析表明,代表性化合物 8a 导致细胞周期停滞在 G0/G1 期,表明 CDK2/E1 复合物可能是这些新合成化合物的潜在生物学靶标。因此,对最活性的化合物(7c 和 8a-c)进行了 CDK2 抑制活性测试。生物结果显示,这些化合物具有显著的 CDK2 抑制活性,IC50 范围为 0.022-1.629 nM。此外,RT-PCR 基因表达试验表明,化合物 8a 分别将核 CDK2 调节因子 P21 和 P27 的水平提高了 2.30 倍和 5.7 倍。ELISA 试验也表明,化合物 8a 可显著激活 caspase-9 和 -3,诱导细胞凋亡。QSAR 研究表明,在该系列中,电荷分布和分子疏水性是影响细胞毒性的结构特征。对最具细胞毒性的化合物(7c 和 8a-c)进行分子对接研究,通过与 CDK2 结合位点中的关键氨基酸形成氢键和疏水相互作用,合理地解释了它们优越的 CDK2 抑制活性。最有效化合物的药代动力学性质预测表明,新合成的化合物不仅具有良好的抗肿瘤活性,而且具有良好的药代动力学性质。

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