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首页> 外文期刊>Journal of Molecular Structure >DNA incision evaluation, binding investigation and biocidal screening of novel metallonucleases of 1,7-bis(4-hydroxy-3-methoxyphenyl)hepta-1,6-diene-3,5-dione based Knoevenagel condensate having methionine: Synthesis and structural validation
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DNA incision evaluation, binding investigation and biocidal screening of novel metallonucleases of 1,7-bis(4-hydroxy-3-methoxyphenyl)hepta-1,6-diene-3,5-dione based Knoevenagel condensate having methionine: Synthesis and structural validation

机译:带有甲硫氨酸的1,7-双(4-羟基-3-甲氧基苯基)庚-1,6-二烯-3,5-二酮基新诺维那尔缩合物的DNA切口评估,结合研究和杀菌筛选:合成和结构验证

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摘要

Four new metallonucleases of the composition [MLCI] (where M = Cu(II), Ni(II), Zn(II) and Co(II); L = Knoevenagel condensate Schiff base, obtained by the condensation reaction of 1,7-bis(4-hydroxy-3-methoxyphenyl)hepta-1,6-diene-3,5-dione with p-nitrobenzaldehyde and methionine amino acid) have been synthesised and characterized thoroughly by microanalytical data, magnetic susceptibility, molar conductivity, UV-Vis., IR,H-1 NMR, C-13 NMR and EPR spectral techniques. Their geometry is investigated and established to have square planar geometry. Electronic absorption spectroscopy, cyclic voltammetry and viscosity measurements reveal that the complexes strongly bind to calf thymus DNA via an intercalation mechanism. DNA cleavage efficiency of these complexes is explored by gel electrophoresis, and they are found to endorse the cleavage of pBR322 DNA in presence of oxidant H2O2. These results reveal that all the complexes show better nuclease activity. Moreover, the biological screening against few pathogens reveals that that the complexes have potent biocidal activity than the free ligand. (C) 2014 Elsevier B.V. All rights reserved.
机译:组成为[MLCI]的四个新的金属核酸酶(其中M = Cu(II),Ni(II),Zn(II)和Co(II); L = Knoevenagel缩合物席夫碱,是通过1,7-已合成了双(4-羟基-3-甲氧基苯基)庚-1,6-二烯-3,5-二酮与对硝基苯甲醛和蛋氨酸氨基酸),并通过微观分析数据,磁化率,摩尔电导率,UV-可见,IR,H-1 NMR,C-13 NMR和EPR光谱技术。研究了它们的几何形状,并确定它们具有方形平面几何形状。电子吸收光谱,循环伏安法和粘度测量结果表明,该复合物通过插入机制与小牛胸腺DNA牢固结合。通过凝胶电泳探索了这些复合物的DNA切割效率,发现它们在存在氧化剂H2O2的情况下支持pBR322 DNA的切割。这些结果表明,所有复合物均显示出更好的核酸酶活性。此外,针对少数病原体的生物学筛选显示,该复合物比游离配体具有更强的杀生物活性。 (C)2014 Elsevier B.V.保留所有权利。

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