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首页> 外文期刊>Inorganica Chimica Acta >Synthesis, characterization of Cu(II) and Zn(II) complexes of proline-glycine and proline-leucine tetrapeptides: In vitro DNA binding and cleavage studies
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Synthesis, characterization of Cu(II) and Zn(II) complexes of proline-glycine and proline-leucine tetrapeptides: In vitro DNA binding and cleavage studies

机译:脯氨酸-甘氨酸和脯氨酸-亮氨酸四肽的Cu(II)和Zn(II)配合物的合成,表征:体外DNA结合和裂解研究

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摘要

New Cu(II) and Zn(II)-based peptide solid complexes 1-4 were designed by de novo synthetic strategy from tetrapeptide ligands, Pro-Gly-Pro-Gly, L~1/Pro-Leu-Pro-Leu, L~2 and thoroughly characterized by various spectroscopic techniques. To confirm the stability of peptide complexes in solution, solution stability studies of 1 and 3 over a pH range 2-12 were carried out which revealed no change in absorption or intensity of bands. In vitro DNA binding studies employing various optical techniques were carried out to examine the propensity of complexes towards CT DNA. The results of corroborative experiments reveal that the complexes avidly bind to CT DNA via groove binding, with highest K_b values for 1 indicative of strong binding propensity as compared to ligands and 2-4. To compare the binding affinity for nucleotides, UV-Vis titrations of 1 and 2 with 5′-GMP and 5′-TMP were carried out; further validated by ~1H and ~(31)P NMR. The supercoiled pBR322 DNA nuclease activity 1 and 2, demonstrated that both the complexes were capable of cleaving DNA but with striking differences in their nuclease activity; Cu(II) complex cleaved DNA through oxidative cleavage while Zn(II) complex followed hydrolytic cleavage pathway.
机译:从头合成策略从四肽配体Pro-Gly-Pro-Gly,L〜1 / Pro-Leu-Pro-Leu,L设计新的基于Cu(II)和Zn(II)的肽固体复合物1-4 〜2,并通过各种光谱技术进行了全面表征。为了确认肽复合物在溶液中的稳定性,在pH范围2-12内进行了1和3的溶液稳定性研究,结果表明条带的吸收或强度没有变化。进行了采用各种光学技术的体外DNA结合研究,以检查复合物对CT DNA的倾向。确证实验的结果表明,该复合物通过凹槽结合与CT DNA狂热结合,与配体和2-4相比,具有最高的K_b值(1表示较强的结合倾向)。为了比较对核苷酸的结合亲和力,用5'-GMP和5'-TMP进行1和2的UV-Vis滴定;通过〜1H和〜(31)P NMR进一步验证。超螺旋的pBR322 DNA核酸酶活性1和2表明,两种复合物均能够裂解DNA,但核酸酶活性存在显着差异。 Cu(II)配合物通过氧化裂解来切割DNA,而Zn(II)配合物则通过水解裂解途径。

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