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混合配体二羧酸铜(II)配合物:共配体疏水性在DNA结合、双链DNA切割、蛋白质结合和细胞毒性中的作用。

Mixed ligand copper(II) dicarboxylate complexes: the role of co-ligand hydrophobicity in DNA binding, double-strand DNA cleavage, protein binding and cytotoxicity.

作者信息

Loganathan Rangasamy, Ramakrishnan Sethu, Ganeshpandian Mani, Bhuvanesh Nattamai S P, Palaniandavar Mallayan, Riyasdeen Anvarbatcha, Akbarsha Mohamad Abdulkadhar

机构信息

School of Chemistry, Bharathidasan University, Tiruchirappalli - 620 024, Tamil Nadu, India.

出版信息

Dalton Trans. 2015 Jun 14;44(22):10210-27. doi: 10.1039/c4dt03879g.

DOI:10.1039/c4dt03879g
PMID:25954774
Abstract

A few water soluble mixed ligand copper(ii) complexes of the type [Cu(bimda)(diimine)] , where bimda is N-benzyliminodiacetic acid and diimine is 2,2'-bipyridine (bpy, ) or 1,10-phenanthroline (phen, ) or 5,6-dimethyl-1,10-phenanthroline (5,6-dmp, ) or 3,4,7,8-tetramethyl-1,10-phenanthroline (3,4,7,8-tmp, ) and dipyrido[3,2-d: 2',3'-f]quinoxaline (dpq, ), have been successfully isolated and characterized by elemental analysis and other spectral techniques. The coordination geometry around copper(ii) in is described as distorted square based pyramidal while that in is described as square pyramidal. Absorption spectral titrations and competitive DNA binding studies reveal that the intrinsic DNA binding affinity of the complexes depends upon the diimine co-ligand, dpq () > 3,4,7,8-tmp () > 5,6-dmp () > phen () > bpy (). The phen and dpq co-ligands are involved in the π-stacking interaction with DNA base pairs while the 3,4,7,8-tmp/5,6-dmp and bpy co-ligands are involved in respectively hydrophobic and surface mode of binding with DNA. The small enhancement in the relative viscosity of DNA upon binding to supports the DNA binding modes proposed. Interestingly, and are selective in exhibiting a positive induced CD band (ICD) upon binding to DNA suggesting that they induce B to A conformational change. In contrast, and show CD responses which reveal their involvement in strong DNA binding. The complexes are unique in displaying prominent double-strand DNA cleavage while effects only single-strand DNA cleavage, and their ability to cleave DNA in the absence of an activator varies as > > > > . Also, all the complexes exhibit oxidative double-strand DNA cleavage activity in the presence of ascorbic acid, which varies as > > > > . The ability of the complexes to bind and cleave the protein BSA varies in the order > > > > . Interestingly, and cleave the protein non-specifically in the presence of H2O2 as an activator suggesting that they can act also as chemical proteases. It is remarkable that exhibit cytotoxicity against human breast cancer cell lines (MCF-7) with potency higher than the widely used drug cisplatin indicating that they have the potential to act as effective anticancer drugs in a time dependent manner. The morphological assessment data obtained by using Hoechst 33258 staining reveal that and induce apoptosis much more effectively than other complexes. Also, the alkaline single-cell gel electrophoresis study (comet assay) suggests that the same complexes induce DNA fragmentation more efficiently than others.

摘要

已成功分离出几种类型为[Cu(bimda)(二亚胺)]的水溶性混合配体铜(II)配合物,其中bimda为N-苄基亚氨基二乙酸,二亚胺为2,2'-联吡啶(bpy)或1,10-菲咯啉(phen)或5,6-二甲基-1,10-菲咯啉(5,6-dmp)或3,4,7,8-四甲基-1,10-菲咯啉(3,4,7,8-tmp)以及二吡啶并[3,2-d:2',3'-f]喹喔啉(dpq),并通过元素分析和其他光谱技术对其进行了表征。[Cu(bimda)(dpq)]中铜(II)周围的配位几何形状被描述为扭曲的四方锥,而[Cu(bimda)(phen)]中的则被描述为四方锥。吸收光谱滴定和竞争性DNA结合研究表明,配合物的内在DNA结合亲和力取决于二亚胺共配体,dpq()>3,4,7,8-tmp()>5,6-dmp()>phen()>bpy()。phen和dpq共配体参与与DNA碱基对的π-堆积相互作用,而3,4,7,8-tmp/5,6-dmp和bpy共配体分别参与与DNA的疏水和表面结合模式。与DNA结合后DNA相对粘度的小幅增加支持了所提出的DNA结合模式。有趣的是,[Cu(bimda)(dpq)]和[Cu(bimda)(phen)]在与DNA结合时选择性地表现出正诱导CD带(ICD),表明它们诱导B到A的构象变化。相比之下,[Cu(bimda)(3,4,7,8-tmp)]和[Cu(bimda)(5,6-dmp)]显示出的CD响应表明它们参与了强烈的DNA结合。这些配合物的独特之处在于显示出显著的双链DNA切割,而[Cu(bimda)(bpy)]仅影响单链DNA切割,并且它们在没有激活剂的情况下切割DNA的能力变化为[Cu(bimda)(dpq)]>[Cu(bimda)(phen)]>[Cu(bimda)(3,4,7,8-tmp)]>[Cu(bimda)(5,6-dmp)]>[Cu(bimda)(bpy)]。此外,在抗坏血酸存在下,所有配合物都表现出氧化双链DNA切割活性,其变化为[Cu(bimda)(dpq)]>[Cu(bimda)(phen)]>[Cu(bimda)(3,4,7,8-tmp)]>[Cu(bimda)(5,6-dmp)]>[Cu(bimda)(bpy)]。配合物与蛋白质BSA结合和切割的能力顺序为[Cu(bimda)(dpq)]>[Cu(bimda)(phen)]>[Cu(bimda)(3,4,7,8-tmp)]>[Cu(bimda)(5,6-dmp)]>[Cu(bimda)(bpy)]。有趣的是,[Cu(bimda)(phen)]和[Cu(bimda)(dpq)]在H2O2作为激活剂存在下非特异性地切割蛋白质,表明它们也可以作为化学蛋白酶起作用。值得注意的是,[Cu(bimda)(dpq)]和[Cu(bimda)(phen)]对人乳腺癌细胞系(MCF-7)表现出细胞毒性,其效力高于广泛使用的药物顺铂,表明它们有可能以时间依赖性方式作为有效的抗癌药物起作用。使用Hoechst 33258染色获得的形态学评估数据表明,[Cu(bimda)(dpq)]和[Cu(bimda)(phen)]比其他配合物更有效地诱导细胞凋亡。此外,碱性单细胞凝胶电泳研究(彗星试验)表明,相同的配合物比其他配合物更有效地诱导DNA片段化。

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