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三齿吡啶甲基乙二胺的铜(II)配合物:配体空间位阻对DNA结合和切割的作用

Copper(II) complexes of tridentate pyridylmethylethylenediamines: role of ligand steric hindrance on DNA binding and cleavage.

作者信息

Raja Angamuthu, Rajendiran Venugopal, Uma Maheswari Palanisamy, Balamurugan Ramalingam, Kilner Colin A, Halcrow Malcolm A, Palaniandavar Mallayan

机构信息

School of Chemistry, Bharathidasan University, Tiruchirapalli 620 024, Tamilnadu, India.

出版信息

J Inorg Biochem. 2005 Aug;99(8):1717-32. doi: 10.1016/j.jinorgbio.2005.05.014.

Abstract

Copper(II) complexes of three linear unsymmetrical tridentate ligands viz. N-methyl-N'-(pyrid-2-ylmethyl)ethylenediamine (L1), N,N-dimethyl-N'-(pyrid-2-ylmethyl)ethylenediamine (L2) and N,N-dimethyl-N'-((6-methyl)pyrid-2-ylmethyl)ethylenediamine (L3) have been isolated and characterized by elemental analysis, electronic absorption and EPR spectroscopy and cyclic and differential pulse voltammetry. Of these complexes [Cu(L2)Cl2] and [Cu(L3)Cl2] have been structurally characterized by X-ray crystallography. The [Cu(L2)Cl2] complex crystallizes in the monoclinic space group P2(1)/n with a=11.566(2) A, b=7.369(1) A, c=15.703(3) A, alpha=90 degrees , beta=109.68(8) degrees , gamma=90 degrees and Z=4 while [Cu(L3)Cl2] crystallizes in the triclinic space group P1 with a=9.191(2) A, b=12.359(3) A, c=14.880(3) A, alpha=79.61(13) degrees , beta=86.64(13) degrees , gamma=87.28(8) degrees and Z=2. The coordination geometries around copper (II) in these two complexes are best described as trigonal bipyramidal distorted square based pyramidal (TBDSBP). The distorted CuN3Cl basal plane in them is comprised of three nitrogen atoms of the meridionally coordinated ligand and a chloride ion and the axial position is occupied by the other chloride ion. The interaction of these complexes with Calf Thymus DNA (CT DNA) has been studied by using absorption, emission and circular dichroic spectral methods, thermal denaturation studies, viscometry and cyclic and differential pulse voltammetry. A strong blueshift in the ligand field band and a redshift in the ligand based bands of the copper(II) complexes on binding to DNA imply a covalent mode of DNA binding of the complexes, which involves coordination of most possibly guanine N7 nitrogen of DNA to form a CuN4 chromophore. This is supported by studying the interaction of the complexes with N-methylimidazole (N-meim), guanosine monophosphate (GMP), adenosine monophosphate (AMP) and cytidine (cytd) by ligand field and EPR spectral methods, which indicate the formation of a CuN4 chromophore only in the case of the more basic N-meim and GMP. The DNA melting curves obtained in the presence of copper(II) complexes reveal a monophasic and irreversible melting of the DNA strands and the high positive DeltaTm values (12-21 degrees C) also support the formation of strong Cu-N bonds by the complexes with DNA, leading to intra- and/or interstrand crosslinking of DNA. Competitive ethidium bromide (EthBr) binding studies show that the L2 and L3 complexes are less efficient than the L1 complex in quenching EthBr emission, which is consistent with their forming DNA crosslinking preventing the displacement of the DNA-bound EthBr. A very slight decrease in relative viscosity of DNA is observed on treating the L1 and L2 complexes with CT DNA; however, a relatively significant decrease is observed for the L3 complex suggesting that the length of the DNA fiber is shortened. DNA cleavage experiments show that all the complexes induce the cleavage of pBR322 plasmid DNA, the complex of L1 being more efficient than those of sterically hindered L2 and L3 ligands.

摘要

三种线性不对称三齿配体即N-甲基-N'-(吡啶-2-基甲基)乙二胺(L1)、N,N-二甲基-N'-(吡啶-2-基甲基)乙二胺(L2)和N,N-二甲基-N'-((6-甲基)吡啶-2-基甲基)乙二胺(L3)的铜(II)配合物已通过元素分析、电子吸收和电子顺磁共振光谱以及循环和差分脉冲伏安法进行了分离和表征。其中,[Cu(L2)Cl2]和[Cu(L3)Cl2]配合物已通过X射线晶体学进行了结构表征。[Cu(L2)Cl2]配合物在单斜空间群P2(1)/n中结晶,a = 11.566(2) Å,b = 7.369(1) Å,c = 15.703(3) Å,α = 90°,β = 109.68(8)°,γ = 90°,Z = 4;而[Cu(L3)Cl2]在三斜空间群P1中结晶,a = 9.191(2) Å,b = 12.359(3) Å,c = 14.880(3) Å,α = 79.61(13)°,β = 86.64(13)°,γ = 87.28(8)°,Z = 2。这两种配合物中铜(II)周围的配位几何结构最好描述为三角双锥畸变的正方锥(TBDSBP)。其中畸变的CuN3Cl基面由经向配位配体的三个氮原子和一个氯离子组成,轴向位置由另一个氯离子占据。已通过吸收、发射和圆二色光谱法、热变性研究、粘度测定以及循环和差分脉冲伏安法研究了这些配合物与小牛胸腺DNA(CT DNA)的相互作用。铜(II)配合物与DNA结合时,配体场带发生强烈蓝移,基于配体的带发生红移,这意味着配合物与DNA的结合模式为共价结合,这可能涉及DNA的鸟嘌呤N7氮的配位以形成CuN4发色团。通过配体场和电子顺磁共振光谱法研究配合物与N-甲基咪唑(N-meim)、鸟苷单磷酸(GMP)、腺苷单磷酸(AMP)和胞苷(cytd)的相互作用,支持了这一点,结果表明仅在碱性更强的N-meim和GMP的情况下形成了CuN4发色团。在铜(II)配合物存在下获得的DNA熔解曲线显示DNA链呈单相且不可逆熔解,高正值的ΔTm值(12 - 21℃)也支持配合物与DNA形成强Cu - N键,导致DNA的链内和/或链间交联。竞争性溴化乙锭(EthBr)结合研究表明,L2和L3配合物在淬灭EthBr发射方面比L1配合物效率低,这与它们形成DNA交联从而阻止与DNA结合的EthBr被取代一致。用CT DNA处理L1和L2配合物时,观察到DNA的相对粘度略有下降;然而,L3配合物的相对粘度下降较为显著,表明DNA纤维的长度缩短。DNA切割实验表明,所有配合物均能诱导pBR322质粒DNA的切割,L1配合物比空间位阻较大的L2和L3配体的配合物更有效。

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