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抗肿瘤药物曲贝替定(Yondelis)和放线菌素A3与在相反链上含有两个相邻TGG结合位点的寡核苷酸序列形成的2:1复合物中的DNA结构相似性。

DNA structural similarity in the 2:1 complexes of the antitumor drugs trabectedin (Yondelis) and chromomycin A3 with an oligonucleotide sequence containing two adjacent TGG binding sites on opposing strands.

作者信息

Marco Esther, Gago Federico

机构信息

Departamento de Farmacología, Universidad de Alcalá, E-28871 Alcalá de Henares, Madrid, Spain.

出版信息

Mol Pharmacol. 2005 Dec;68(6):1559-67. doi: 10.1124/mol.105.015685. Epub 2005 Sep 8.

Abstract

Yondelis (trabectedin) is an antitumor ecteinascidin that binds covalently to the 2-amino group of the central guanine in the minor groove of selected DNA pyrimidine-G-G and purine-G-C triplets. Chromomycin A3 is an aureolic acid derivative that binds noncovalently to the DNA minor groove in G/C-rich triplet sites as a metal-chelated dimer. Despite their different binding modes, the cytotoxicity profiles of these two drugs, as assessed in the COMPARE analysis carried out by the National Cancer Institute on data from 60 human tumor cell lines, are highly correlated (Pearson's correlation coefficient of 0.96). We now report that in an oligonucleotide containing the "natural bending element" TGGCCA, the structural distortions inflicted by the tail-to-tail bonding of two trabectedin molecules to adjacent target sites on opposing strands are strikingly similar to those observed in a crystal containing d(TTGGCCAA)2 and two bound chromomycin A3 molecules arranged in a head-to-tail orientation in the minor groove. In both complexes, the double helix is characterized by being considerably unwound and possessing a notably widened minor groove. Binding of the drugs to this sequence could be favored by the distinct bends at each of the TpG steps that are already present in the free oligonucleotide. Simultaneous drug binding to the two strands in the manner described here is proposed to stabilize the helical structure of duplex DNA to prevent or hamper strand separation and stall replication and transcription forks.

摘要

Yondelis(曲贝替定)是一种抗肿瘤的海鞘素,它能与选定的DNA嘧啶 - G - G和嘌呤 - G - C三联体小沟中的中央鸟嘌呤的2 - 氨基共价结合。放线菌素A3是一种金霉素衍生物,作为金属螯合二聚体非共价结合于富含G/C的三联体位点的DNA小沟。尽管它们的结合模式不同,但美国国立癌症研究所根据60种人类肿瘤细胞系的数据进行的COMPARE分析评估显示,这两种药物的细胞毒性谱高度相关(皮尔逊相关系数为0.96)。我们现在报告,在一个含有“天然弯曲元件”TGGCCA的寡核苷酸中,两个曲贝替定分子尾对尾结合到相反链上相邻靶位点所造成的结构扭曲,与在一个含有d(TTGGCCAA)₂以及两个在小沟中呈头对头排列的结合的放线菌素A3分子的晶体中观察到的扭曲惊人地相似。在这两种复合物中,双螺旋的特征是明显解旋且小沟显著变宽。药物与该序列的结合可能受到游离寡核苷酸中每个TpG步骤处已存在的明显弯曲的促进。本文所述的药物同时与两条链结合的方式被认为可稳定双链DNA的螺旋结构,以防止或阻碍链分离并使复制叉和转录叉停滞。

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