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首页> 外文期刊>Journal of Medicinal Chemistry >Structures of Three Classes of Anticancer Agents Bound to the Human Topoisomerase I-DNA Covalent Complex.
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Structures of Three Classes of Anticancer Agents Bound to the Human Topoisomerase I-DNA Covalent Complex.

机译:与人类拓扑异构酶I-DNA共价复合物结合的三类抗癌剂的结构。

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摘要

Human topoisomerase I (top1) is the molecular target of a diverse set of anticancer compounds, including the camptothecins, indolocarbazoles, and indenoisoquinolines. These compounds bind to a transient top1-DNA covalent complex and inhibit the resealing of a single-strand nick that the enzyme creates to relieve superhelical tension in duplex DNA. (Hertzberg, R. P.; et al. Biochem. 1989, 28, 4629-4638. Hsiang, Y. H.; et al. J. Biol. Chem 1985, 260, 14873-14878. Champoux, J. J. Annu. Rev. Biochem. 2001, 70, 369-413. Stewart, L.; et al. Science 1998, 729, 1534-1541.) We report the X-ray crystal structures of the human top1-DNA complex bound with camptothecin and representative members of the indenoisoquinoline and indolocarbazole classes of top1 poisons. The planar nature of all three structurally diverse classes allows them to intercalate between DNA base pairs at the site of single-strand cleavage. All three classes of compounds have a free electron pair near Arg364, a residue that if mutated confers resistance to all three classes of drugs. The common intercalative binding mode is augmented by unexpected chemotype-specific contacts with amino acid residues Asn352 and Glu356, which adopt alternative side-chain conformations to accommodate the bound compounds. These new X-ray structures explain how very different molecules can stabilize top1-DNA covalent complexes and will aid the rational design of completely novel structural classes of anticancer drugs.
机译:人拓扑异构酶I(top1)是多种抗癌化合物的分子靶标,包括喜树碱,吲哚并咔唑和茚并异喹啉。这些化合物与瞬时的top1-DNA共价复合物结合,并抑制酶产生的单链缺口的重新密封,以缓解双链DNA中的超螺旋张力。 (Hertzberg,RP;等人,Biochem.1989,28,4629-4638。Hsiang,YH;等人,J.Biol.Chem 1985,260,14873-14878。Champoux,JJ Annu.Rev.Biochem.2001,70。 ,369-413。Stewart,L .; et al。Science 1998,729,1534-1541。)我们报道了喜树碱与茚并异喹啉和吲哚并咔唑类的代表性成员结合的人类top1-DNA复合物的X射线晶体结构。 top1毒药。所有三种结构上不同的类别的平面性质使它们可以插入单链切割位点的DNA碱基对之间。所有这三类化合物在Arg364附近均具有一个自由电子对,该残基如果发生突变,将对所有这三类药物产生抗性。与氨基酸残基Asn352和Glu356的意外化学型特异性接触增强了常见的嵌入结合模式,后者采用替代性的侧链构象来容纳结合的化合物。这些新的X射线结构说明了非常不同的分子如何稳定top1-DNA共价复合物,并有助于合理设计新型抗癌药物结构。

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