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靶向DNA小沟:贝尼尔呋喃衍生物与DNA十二聚体d(CGCGAATTCGCG)2形成的两种复合物的晶体结构

Targeting the minor groove of DNA: crystal structures of two complexes between furan derivatives of berenil and the DNA dodecamer d(CGCGAATTCGCG)2.

作者信息

Trent J O, Clark G R, Kumar A, Wilson W D, Boykin D W, Hall J E, Tidwell R R, Blagburn B L, Neidle S

机构信息

CRC Biomolecular Structure Unit, Institute of Cancer Research, Sutton, Surrey, UK.

出版信息

J Med Chem. 1996 Nov 8;39(23):4554-62. doi: 10.1021/jm9604484.

Abstract

Crystal structures are reported of complexes of two novel furan derivatives of berenil with alkyl benzamidine groups bound to the DNA sequence d(CGCGAATTCGCG)2. They have both been determined to 2.2 A resolution and refined to R factors of 16.9% and 18.6%. In both structures the alkyl substituents, cyclopropyl and isopropyl, are found to be orientated away from the floor of the minor groove. The drugs are located in the minor groove by two strong amidinium hydrogen bonds, to the O2 of the thymines situated at the 5' and 3' ends of the AT-rich region. The isopropyl-substituted derivative has a tight hydrogen-bonded water network in the minor groove at one amidine site, which alters the orientation of the isopropyl substituent. This compound has superior DNA-binding properties and activity against Pneumocystis carinii and Cryptosporidium parvum infections in vivo compared to the cyclopropyl derivative, which in turn is superior to the parent furan compound. We suggest that the nature and extent of the interactions of these compounds in the DNA minor groove play an important role in these activities, possibly in conjunction with a DNA-binding protein. The overall effect of these alkyl benzamidine substitutions is to increase the binding of the drugs to the minor groove.

摘要

报道了两种新型的贝尼尔呋喃衍生物与结合在DNA序列d(CGCGAATTCGCG)2上的烷基苯甲脒基团形成的复合物的晶体结构。它们的分辨率均达到2.2 Å,精修后的R因子分别为16.9%和18.6%。在这两种结构中,发现烷基取代基(环丙基和异丙基)均背离小沟底部取向。药物通过两个强脒基氢键定位在小沟中,与位于富含AT区域5'和3'端的胸腺嘧啶的O2相连。异丙基取代的衍生物在一个脒基位点的小沟中有紧密的氢键结合水网络,这改变了异丙基取代基的取向。与环丙基衍生物相比,该化合物在体内对卡氏肺孢子虫和微小隐孢子虫感染具有更好的DNA结合特性和活性,而环丙基衍生物又优于母体呋喃化合物。我们认为这些化合物在DNA小沟中的相互作用的性质和程度在这些活性中起重要作用,可能与一种DNA结合蛋白共同作用。这些烷基苯甲脒取代的总体效果是增加药物与小沟的结合。

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