首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Effect of charge transfer bands on the photo-induced DNA cleavage activity of [1-(2-thiazolylazo)-2-naphtholato]copper(II) complexes
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Effect of charge transfer bands on the photo-induced DNA cleavage activity of [1-(2-thiazolylazo)-2-naphtholato]copper(II) complexes

机译:电荷转移带对[1-(2-噻唑基)-2-萘并]铜(II)配合物光诱导DNA切割活性的影响

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摘要

Ternary copper(II) complex [Cu(TAN)(O2CMe)] (1), where H-TAN is 1-(2-thiazolylazo)-2-naphthol, is prepared and structurally characterized by X-ray crystallography. The complex has a distorted square pyramidal (4+1) CuN2O3 coordination geometry with the acetate showing chelating axial-equatorial binding mode and TAN as a tridentate ligand bonded to the metal in the basal plane. Complex 1 is one-electron paramagnetic and displays ligand-to-metal charge transfer bands at 575 and 398 nm in dimethylformamide. The reactions of 1 with bases (B) like 1,10-phenanthroline (phen) and kanamycin-A (kan-A) afford ternary complexes of formulation [Cu(TAN)B]+ (B=phen, 2; kan-A, 3) under in situ reaction conditions. Complexes 2 and 3, prepared to explore their DNA binding and photo-induced DNA cleavage activity, display good binding propensity to calf thymus (CT) DNA giving a relative order: 2-3>1. The apparent binding constant (Kapp) for 1 is determined as 9.8 x 10(5)M(-1) from fluorescence quenching experiments using ethidium bromide. The quenching constants (K) values of 1-3, obtained from the Stern-Volmer plots, are 0.28, 0.52 and 0.49, respectively. All the complexes show photo-induced DNA cleavage activity when irradiated with a monochromatic UV light of 365 nm wavelength. A 200 microM complex 1 cleaves approximately 75% supercoiled (SC) DNA on 2h exposure time at 365 nm. A 50 microM solution of 1 in presence of 100 microM phen and kanamycin-A cleaves approximately 99% and approximately 60% SC DNA to its nicked circular form, respectively, for an exposure of 30 min. The complexes also exhibit significant cleavage of SC DNA on irradiation with visible light of wavelengths 532, 575 and 632.8 nm. Control experiments reveal the minor groove binding nature of the complexes. The cleavage reactions involve the formation reactive hydroxyl species as significant inhibition in the presence of dimethyl sulfoxide (DMSO) and catalase is observed. There is no apparent inhibition in cleavage in the presence of singlet oxygen quenchers like sodium azide. The cleavage activity has been found to be higher at the CT band position of 575 nm in comparison to those at 532 and 632.8 nm. The results indicate the involvement of the CT band in the photo-excitation process.
机译:制备三元铜(II)配合物[Cu(TAN)(O2CMe)](1),其中H-TAN为1-(2-噻唑基偶氮)-2-萘酚,并通过X射线晶体学对其结构进行表征。该配合物具有扭曲的方形锥体(4 + 1)CuN2O3配位几何结构,其中乙酸盐显示出螯合的轴向-赤道键合模式,TAN为三齿配体,与基面上的金属键合。配合物1是单电子顺磁性,在二甲基甲酰胺中显示575和398 nm处的配体到金属的电荷转移带。 1与碱(B)的反应,例如1,10-菲咯啉(phen)和卡那霉素-A(kan-A),可得到三元配合物[Cu(TAN)B] +(B = phen,2; kan-A ,3)在原位反应条件下。为探索其DNA结合和光诱导的DNA裂解活性而准备的复合物2和3与小牛胸腺(CT)DNA表现出良好的结合倾向,相对顺序为2-3> 1。通过使用溴化乙锭的荧光猝灭实验,确定1的表观结合常数(Kapp)为9.8 x 10(5)M(-1)。从Stern-Volmer图获得的1-3的淬灭常数(K)值分别为0.28、0.52和0.49。当用波长为365 nm的单色紫外线照射时,所有复合物均显示出光诱导的DNA裂解活性。一个200 microM的复合物1在365 nm的2h暴露时间可裂解约75%的超螺旋(SC)DNA。在存在100 microM phen和卡那霉素-A的情况下,存在50 microM的1溶液,分别将约99%和约60%的SC DNA切割成带锯齿的圆形,暴露30分钟。所述复合物在用波长532、575和632.8nm的可见光照射时也显示出SC DNA的显着裂解。对照实验揭示了复合物的微小凹槽结合性质。裂解反应涉及形成反应性羟基物质,因为在二甲基亚砜(DMSO)存在下有明显的抑制作用,并且观察到过氧化氢酶。在单重态氧猝灭剂如叠氮化钠的存在下,裂解没有明显的抑制作用。与在532和632.8nm处的那些相比,已经发现在575nm的CT带位置处的切割活性更高。结果表明CT带参与了光激发过程。

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