Hopcroft Nicholas H, Brogden Anna L, Searcey Mark, Cardin Christine J
School of Chemistry, University of Reading Whiteknights, Reading, Berkshire RG6 6AD, UK.
Nucleic Acids Res. 2006;34(22):6663-72. doi: 10.1093/nar/gkl930. Epub 2006 Dec 1.
Acridine-4-carboxamides form a class of known DNA mono-intercalating agents that exhibit cytotoxic activity against tumour cell lines due to their ability to inhibit topoisomerases. Previous studies of bis-acridine derivatives have yielded equivocal results regarding the minimum length of linker necessary between the two acridine chromophores to allow bis-intercalation of duplex DNA. We report here the 1.7 A resolution X-ray crystal structure of a six-carbon-linked bis(acridine-4-carboxamide) ligand bound to d(CGTACG)2 molecules by non-covalent duplex cross-linking. The asymmetric unit consists of one DNA duplex containing an intercalated acridine-4-carboxamide chromophore at each of the two CG steps. The other half of each ligand is bound to another DNA molecule in a symmetry-related manner, with the alkyl linker threading through the minor grooves. The two crystallographically independent ligand molecules adopt distinct side chain interactions, forming hydrogen bonds to either O6 or N7 on the major groove face of guanine, in contrast to the semi-disordered state of mono-intercalators bound to the same DNA molecule. The complex described here provides the first structural evidence for the non-covalent cross-linking of DNA by a small molecule ligand and suggests a possible explanation for the inconsistent behaviour of six-carbon linked bis-acridines in previous assays of DNA bis-intercalation.
吖啶-4-羧酰胺构成一类已知的DNA单嵌入剂,由于它们具有抑制拓扑异构酶的能力,因而对肿瘤细胞系表现出细胞毒性活性。先前对双吖啶衍生物的研究对于两个吖啶发色团之间允许双链DNA双嵌入所需的最短连接子长度得出了不确定的结果。我们在此报告了一种通过非共价双链交联与d(CGTACG)2分子结合的六碳连接双(吖啶-4-羧酰胺)配体的1.7埃分辨率X射线晶体结构。不对称单元由一个DNA双链体组成,在两个CG步骤的每一步都含有一个嵌入的吖啶-4-羧酰胺发色团。每个配体的另一半以对称相关的方式与另一个DNA分子结合,烷基连接子穿过小沟。与结合到相同DNA分子的单嵌入剂的半无序状态相反,两个晶体学独立的配体分子采用不同的侧链相互作用,在鸟嘌呤大沟面上与O6或N7形成氢键。这里描述的复合物为小分子配体对DNA的非共价交联提供了首个结构证据,并为先前DNA双嵌入测定中六碳连接双吖啶行为不一致提供了一种可能的解释。