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表面形状对双金属螺旋配合物DNA结合的影响。

Influence of surface shape on DNA binding of bimetallo helicates.

作者信息

Peberdy Jemma C, Malina Jaroslav, Khalid Syma, Hannon Michael J, Rodger Alison

机构信息

Department of Chemistry, University of Warwick, Coventry CV4 7AL, UK.

出版信息

J Inorg Biochem. 2007 Nov;101(11-12):1937-45. doi: 10.1016/j.jinorgbio.2007.07.005. Epub 2007 Jul 16.

Abstract

In order to probe the DNA-helicate interactions responsible for the DNA binding and remarkable changes of the DNA secondary structure induced by a tetracationic bi-metallo helicate Fe(2)(L(1))(3) (L(1)=C(25)H(20)N(4)), we have designed and synthesised derivatives with hydrophobic methyl groups at different positions on the ligand backbone. Two dimetallo helicates Fe(2)(L(i))(3) were prepared using ligands L(3) and L(5) with the methyl substituent on, respectively, the 3 and 5 positions of the pyridyl ring thus producing a wider or slightly longer tetracationic DNA binder. UV/visible absorbance, circular and linear dichroism spectroscopies have been used to characterize the interactions of the cylinders with DNA with the aim of investigating any sequence preference or selectivity upon binding. Competitive binding studies using fluorescent dyes Hoechst 33258 (a minor groove binder), ethidium bromide (an intercalator) and a major groove binding cation (cobalt (III) hexammine) which induces the B-->Z transition have been employed to determine the binding geometries of the enantiomers of two methylated helicates (L(3) and L(5)) to DNA and compare with the data obtained previously for the unmethylated analogue (L(1)). The results demonstrate that the racemic mixtures and the resolved enantiomers of all helicates bind to DNA inducing structural changes. The overall conclusion from the effect of adding these groups to the surface of the parent helicate is that increasing the width (L(3)) reduces the DNA binding strength, the bending and coiling effect and the groove selectivity of the enantiomers compared with the parent compound. There is limited evidence to suggest a slight GC sequence preference. Lengthening the helicate (L(5)) results in DNA interactions similar to those of the parent compounds, with an increased preference of the P enantiomer for the minor groove indicating an enhancement of mode selectivity.

摘要

为了探究由双金属四核阳离子螺旋体Fe(2)(L(1))(3)(L(1)=C(25)H(20)N(4))引起的负责DNA结合及DNA二级结构显著变化的DNA-螺旋体相互作用,我们设计并合成了在配体主链不同位置带有疏水甲基的衍生物。使用分别在吡啶环的3位和5位带有甲基取代基的配体L(3)和L(5)制备了两种双金属螺旋体Fe(2)(L(i))(3),从而得到了一种更宽或稍长的四核阳离子DNA结合剂。紫外/可见吸收光谱、圆二色光谱和线性二色光谱已被用于表征圆柱体与DNA的相互作用,目的是研究结合时的任何序列偏好或选择性。使用荧光染料Hoechst 33258(一种小沟结合剂)、溴化乙锭(一种嵌入剂)和一种诱导B→Z转变的大沟结合阳离子(六氨合钴(III))进行竞争结合研究,以确定两种甲基化螺旋体(L(3)和L(5))的对映体与DNA的结合几何结构,并与之前获得的未甲基化类似物(L(1))的数据进行比较。结果表明,所有螺旋体的外消旋混合物和拆分后的对映体均与DNA结合并诱导结构变化。在母体螺旋体表面添加这些基团的效果得出的总体结论是,与母体化合物相比,增加宽度(L(3))会降低DNA结合强度、弯曲和卷曲效应以及对映体的沟选择性。有有限的证据表明对GC序列有轻微偏好。延长螺旋体(L(5))会导致与母体化合物类似的DNA相互作用,P对映体对小沟的偏好增加,表明模式选择性增强。

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