首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Iron(III) Schiff base complexes of arginine and lysine as netropsin mimics showing AT-selective DNA binding and photonuclease activity
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Iron(III) Schiff base complexes of arginine and lysine as netropsin mimics showing AT-selective DNA binding and photonuclease activity

机译:精氨酸和赖氨酸的铁(III)Schiff碱配合物,作为netropsin模拟物,显示AT选择性DNA结合和光核酸酶活性

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Iron(III) complexes [Fe(L)2]Cl (1–3), where L is monoanionic N-salicylidene-arginine (sal-argH for 1), hydroxynaphthylidene-arginine (nap-argH for 2) and N-salicylidene-lysine (sal-lysH for 3), were prepared and their DNA binding and photo-induced DNA cleavage activity studied. Complex 3 as its hexafluorophosphate salt [Fe(sal-lysH)2](PF6)6H2O (3a) was structurally characterized by single crystal Xray crystallography. The crystals belonged to the triclinic space group P-1. The complex has two tridentate ligands in FeN2O4 coordination geometry with two pendant cationic amine moieties. Complexes 1 and 2 with two pendant cationic guanidinium moieties are the structural models for the antitumor antibiotics netropsin. The complexes are stable and soluble in water. They showed quasi-reversible Fe(III)/ Fe(II) redox couple near 0.6 V in H2O–0.1 M KCl. The high-spin 3d5-iron(III) complexes with leff value of 5.9 lB displayed ligand-to-metal charge transfer electronic band near 500 nm in Tris–HCl buffer. The complexes show binding to Calf Thymus (CT) DNA. Complex 2 showed better binding propensity to the synthetic oligomer poly(dA)poly(dT) than to CT-DNA or poly(dG)poly(dC). All the complexes displayed chemical nuclease activity in the presence of 3-mercaptopropionic acid as a reducing agent and cleaved supercoiled pUC19 DNA to its nicked circular form. They exhibited photo-induced DNA cleavage activity in UV-A light and visible light via a mechanistic pathway that involves the formation of reactive hydroxyl radical species.
机译:铁(III)络合物[Fe(L)2] Cl(1-3),其中L为单阴离子N-水杨亚氨酸-精氨酸(sal-argH为1),羟基萘亚精氨酸(nap-argH为2)和N-水杨基制备了赖氨酸(sal-lysH,3种),并研究了它们的DNA结合和光诱导的DNA裂解活性。通过单晶X射线晶体学对作为其六氟磷酸盐[Fe(sal-lysH)2](PF 6)6 H 2 O(3a)的配合物3进行结构表征。晶体属于三斜空间群P-1。该络合物在FeN2O4配位几何结构中具有两个三齿配体,带有两个侧基阳离子胺部分。具有两个侧基阳离子胍基侧基的配合物1和2是抗肿瘤抗生素netropsin的结构模型。该络合物稳定且可溶于水。他们显示在H2O–0.1 M KCl中接近0.6 V的准可逆Fe(III)/ Fe(II)氧化还原对。 leff值为5.9 lB的高自旋3d5-铁(III)配合物在Tris-HCl缓冲液中显示了近500 nm的配体-金属电荷转移电子带。该复合物显示出与小牛胸腺(CT)DNA的结合。配合物2对合成低聚物poly(dA)poly(dT)的结合倾向比对CT-DNA或poly(dG)poly(dC)的结合倾向更好。在存在3-巯基丙酸作为还原剂的情况下,所有复合物均显示出化学核酸酶活性,并将超螺旋的pUC19 DNA切割成带锯齿的圆形。他们通过涉及反应性羟基自由基物质形成的机制途径,在UV-A光和可见光中表现出光诱导的DNA裂解活性。

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