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Cink4T,一种基于喹唑啉酮的 Cdk4 和微管聚合的双重抑制剂,通过基于配体的虚拟筛选发现,可有效用于癌症治疗。

Cink4T, a quinazolinone-based dual inhibitor of Cdk4 and tubulin polymerization, identified via ligand-based virtual screening, for efficient anticancer therapy.

机构信息

Leicester School of Pharmacy, De Montfort University, Leicester, LE1 9BH, UK.

Department of Pharmaceutical Sciences & Technology, Birla Institute of Technology, Mesra, Ranchi, 835215, India.

出版信息

Eur J Med Chem. 2019 Mar 1;165:115-132. doi: 10.1016/j.ejmech.2019.01.011. Epub 2019 Jan 10.

Abstract

Inhibition of cyclin dependent kinase 4 (Cdk4) prevents cancer cells from entering the early G/G phase of the cell division cycle whereas inhibiting tubulin polymerization blocks cancer cells' ability to undergo mitosis (M) late in the cell cycle. We had reported earlier that two non-planar and relatively non-toxic fascaplysin derivatives, an indole and a tryptoline, inhibit Cdk4 with IC values of 6.2 and 10 μM, respectively. Serendipitously, we had also found that they inhibited tubulin polymerization. The molecules were efficacious in mouse tumor models. We have now identified Cink4T in a 59-compound quinazolinone library, designed on the basis of ligand-based virtual screening, as a compound that inhibits Cdk4 and tubulin. Its IC value for Cdk4 inhibition is 0.47 μM and >50 μM for inhibition of Cdk1, Cdk2, Cdk6, Cdk9. Cink4T inhibits tubulin polymerization with an IC of 0.6 μM. Molecular modelling studies on Cink4T with Cdk4 and tubulin crystal structures lend support to these observations. Cancer cell cycle analyses confirm that Cink4T blocks cells at both G/G and M phases as it should if it were to inhibit both Cdk4 and tubulin polymerization. Our results show, for the very first time, that virtual screening can be used to design novel inhibitors that can potently block two crucial phases of the cell division cycle.

摘要

细胞周期蛋白依赖性激酶 4(Cdk4)的抑制作用可防止癌细胞进入细胞分裂周期的早期 G1/G0 期,而微管聚合的抑制作用则阻止癌细胞在细胞周期的晚期进行有丝分裂(M)。我们之前曾报道过,两种非平面且相对非毒性的 fascaplysin 衍生物,一种吲哚和一种色胺,分别以 6.2 和 10 μM 的 IC 值抑制 Cdk4。偶然的是,我们还发现它们抑制了微管聚合。这些分子在小鼠肿瘤模型中是有效的。我们现在已经在基于配体的虚拟筛选设计的 59 种喹唑啉酮库中鉴定出 Cink4T,它是一种抑制 Cdk4 和微管的化合物。其对 Cdk4 的抑制 IC 值为 0.47 μM,对 Cdk1、Cdk2、Cdk6、Cdk9 的抑制作用>50 μM。Cink4T 抑制微管聚合的 IC 值为 0.6 μM。Cink4T 与 Cdk4 和微管晶体结构的分子建模研究支持了这些观察结果。癌细胞周期分析证实,Cink4T 可阻止细胞进入 G1/G0 和 M 期,因为它应该同时抑制 Cdk4 和微管聚合。我们的研究结果首次表明,虚拟筛选可用于设计新型抑制剂,从而有效阻断细胞分裂周期的两个关键阶段。

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