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抗疟和具有细胞毒性的药物隐丹参酮在胞嘧啶-胞嘧啶位点嵌入DNA。

The antimalarial and cytotoxic drug cryptolepine intercalates into DNA at cytosine-cytosine sites.

作者信息

Lisgarten John N, Coll Miquel, Portugal Jose, Wright Colin W, Aymami Juan

机构信息

Institut de Biologia Molecular de Barcelona, C.S.I.C., Jordi Girona 18, 08034 Barcelona, Spain.

出版信息

Nat Struct Biol. 2002 Jan;9(1):57-60. doi: 10.1038/nsb729.

Abstract

Cryptolepine, a naturally occurring indoloquinoline alkaloid used as an antimalarial drug in Central and Western Africa, has been found to bind to DNA in a formerly unknown intercalation mode. Evidence from competition dialysis assays demonstrates that cryptolepine is able to bind CG-rich sequences containing nonalternating CC sites. Here we show that cryptolepine interacts with the CC sites of the DNA fragment d(CCTAGG)(2) in a base-stacking intercalation mode. This is the first DNA intercalator complex, from approximately 90 solved by X-ray crystallography, to bind a nonalternating (pyrimidine-pyrimidine) DNA sequence. The asymmetry of the drug induces a perfect stacking with the asymmetric site, allowing for the stability of the complex in the absence of hydrogen bonding interactions. The crystal structure of this antimalarial drug-DNA complex provides evidence for the first nonalternating intercalation and, as such, provides a basis for the design of new anticancer or antimalarial drugs.

摘要

柯桠素是一种天然存在的吲哚喹啉生物碱,在中非和西非被用作抗疟药物,现已发现它能以前所未知的嵌入模式与DNA结合。竞争透析分析的证据表明,柯桠素能够结合含有非交替CC位点的富含CG的序列。在此我们表明,柯桠素以碱基堆积嵌入模式与DNA片段d(CCTAGG)(2)的CC位点相互作用。这是通过X射线晶体学解析的约90种DNA嵌入剂复合物中,首个结合非交替(嘧啶-嘧啶)DNA序列的复合物。药物的不对称性导致其与不对称位点完美堆积,在不存在氢键相互作用的情况下使复合物保持稳定。这种抗疟药物-DNA复合物的晶体结构为首个非交替嵌入提供了证据,因此为新型抗癌或抗疟药物的设计提供了基础。

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