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微管蛋白聚合的芳硫基吲哚抑制剂。3. 生物学评价、构效关系及分子模拟研究。

Arylthioindole inhibitors of tubulin polymerization. 3. Biological evaluation, structure-activity relationships and molecular modeling studies.

作者信息

La Regina Giuseppe, Edler Michael C, Brancale Andrea, Kandil Sahar, Coluccia Antonio, Piscitelli Francesco, Hamel Ernest, De Martino Gabriella, Matesanz Ruth, Díaz José Fernando, Scovassi Anna Ivana, Prosperi Ennio, Lavecchia Antonio, Novellino Ettore, Artico Marino, Silvestri Romano

机构信息

Istituto Pasteur - Fondazione Cenci Bolognetti, Dipartimento di Studi Farmaceutici, Sapienza Università di Roma, Piazzale Aldo Moro 5, I-00185 Roma, Italy.

出版信息

J Med Chem. 2007 Jun 14;50(12):2865-74. doi: 10.1021/jm061479u. Epub 2007 May 12.

Abstract

The new arylthioindole (ATI) derivatives 10, 14-18, and 21-24, which bear a halogen atom or a small size ether group at position 5 of the indole moiety, were compared with the reference compounds colchicine and combretastatin A-4 for biological activity. Derivatives 10, 11, 16, and 21-24 inhibited MCF-7 cell growth with IC50 values <50 nM. A halogen atom (14-17) at position 5 caused a significant reduction in the free energy of binding of compound to tubulin, with a concomitant reduction in cytotoxicity. In contrast, methyl (21) and methoxy (22) substituents at position 5 caused an increase in cytotoxicity. Compound 16, the most potent antitubulin agent, led to a large increase (56%) in HeLa cells in the G2/M phase at 24 h, and at 48 h, 26% of the cells were hyperploid. Molecular modeling studies showed that, despite the absence of the ester moiety present in the previously examined analogues, most of the compounds bind in the colchicine site in the same orientation as the previously studied ATIs. Binding to beta-tubulin involved formation of a hydrogen bond between the indole and Thr179 and positioning of the trimethoxy phenyl group in a hydrophobic pocket near Cys241.

摘要

将吲哚部分5位带有卤原子或小尺寸醚基的新型芳硫基吲哚(ATI)衍生物10、14 - 18以及21 - 24与参考化合物秋水仙碱和康普瑞他汀A - 4进行生物活性比较。衍生物10、11、16以及21 - 24抑制MCF - 7细胞生长,IC50值<50 nM。5位的卤原子(14 - 17)导致化合物与微管蛋白结合的自由能显著降低,同时细胞毒性也降低。相反,5位的甲基(21)和甲氧基(22)取代基导致细胞毒性增加。最有效的抗微管蛋白剂化合物16在24小时时使HeLa细胞中G2/M期大幅增加(56%),在48小时时,26%的细胞为超倍体。分子模拟研究表明,尽管在所研究的类似物中不存在先前检测到的酯部分,但大多数化合物在秋水仙碱位点的结合方向与先前研究的ATI相同。与β - 微管蛋白的结合涉及吲哚与Thr179之间形成氢键以及三甲氧基苯基在靠近Cys241的疏水口袋中的定位。

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