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具有与拓扑异构酶1-DNA复合物新结合模式的B环芳基取代路脱辛A类似物表现出增强的细胞毒性活性。

B-ring-aryl substituted luotonin A analogues with a new binding mode to the topoisomerase 1-DNA complex show enhanced cytotoxic activity.

作者信息

González-Ruiz Víctor, Pascua Irene, Fernández-Marcelo Tamara, Ribelles Pascual, Bianchini Giulia, Sridharan Vellaisamy, Iniesta Pilar, Ramos M Teresa, Olives Ana I, Martín M Antonia, Menéndez J Carlos

机构信息

Sección Departamental de Química Analítica, Facultad de Farmacia, Universidad Complutense, Madrid, Spain; BIOHET (Biologically Relevant Heterocycles) group, Facultad de Farmacia, Universidad Complutense, Madrid, Spain.

Departamento de Bioquímica y Biología Molecular II, Facultad de Farmacia, Universidad Complutense, Madrid, Spain; Instituto de Investigación Sanitaria del Hospital Clínico San Carlos, Madrid, Spain.

出版信息

PLoS One. 2014 May 15;9(5):e95998. doi: 10.1371/journal.pone.0095998. eCollection 2014.

Abstract

Topoisomerase 1 inhibition is an important strategy in targeted cancer chemotherapy. The drugs currently in use acting on this enzyme belong to the family of the camptothecins, and suffer severe limitations because of their low stability, which is associated with the hydrolysis of the δ-lactone moiety in their E ring. Luotonin A is a natural camptothecin analogue that lacks this functional group and therefore shows a much-improved stability, but at the cost of a lower activity. Therefore, the development of luotonin A analogues with an increased potency is important for progress in this area. In the present paper, a small library of luotonin A analogues modified at their A and B rings was generated by cerium(IV) ammonium nitrate-catalyzed Friedländer reactions. All analogues showed an activity similar or higher than the natural luotonin A in terms of topoisomerase 1 inhibition and some compounds had an activity comparable to that of camptothecin. Furthermore, most compounds showed a better activity than luotonin A in cell cytotoxicity assays. In order to rationalize these results, the first docking studies of luotonin-topoisomerase 1-DNA ternary complexes were undertaken. Most compounds bound in a manner similar to luotonin A and to standard topoisomerase poisons such as topotecan but, interestingly, the two most promising analogues, bearing a 3,5-dimethylphenyl substituent at ring B, docked in a different orientation. This binding mode allows the hydrophobic moiety to be shielded from the aqueous environment by being buried between the deoxyribose belonging to the G(+1) guanine and Arg364 in the scissile strand and the surface of the protein and a hydrogen bond between the D-ring carbonyl and the basic amino acid. The discovery of this new binding mode and its associated higher inhibitory potency is a significant advance in the design of new topoisomerase 1 inhibitors.

摘要

拓扑异构酶1抑制是靶向癌症化疗中的一项重要策略。目前作用于该酶的药物属于喜树碱类,由于其稳定性低而存在严重局限性,这与它们E环中δ-内酯部分的水解有关。路托品A是一种天然喜树碱类似物,缺乏该官能团,因此稳定性有了很大提高,但代价是活性较低。因此,开发具有更高效力的路托品A类似物对于该领域的进展很重要。在本文中,通过硝酸铈铵催化的Friedländer反应生成了一个在A环和B环上修饰的路托品A类似物的小型文库。所有类似物在拓扑异构酶1抑制方面均表现出与天然路托品A相似或更高的活性,一些化合物的活性与喜树碱相当。此外,大多数化合物在细胞毒性试验中表现出比路托品A更好的活性。为了合理解释这些结果,进行了路托品-拓扑异构酶1-DNA三元复合物的首次对接研究。大多数化合物的结合方式与路托品A和标准拓扑异构酶毒药(如拓扑替康)相似,但有趣的是,两个最有前景的类似物,在B环上带有3,5-二甲基苯基取代基,以不同的方向对接。这种结合模式使疏水部分被埋在属于G(+1)鸟嘌呤的脱氧核糖和可裂解链中的Arg364之间以及蛋白质表面,从而与水性环境隔离,并且D环羰基与碱性氨基酸之间形成氢键。这种新结合模式及其相关的更高抑制效力的发现是新型拓扑异构酶1抑制剂设计中的一项重大进展。

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