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调节锌(II)配合物在DNA切割中的活性:新型高效金属水解酶设计的线索

Tuning the activity of Zn(II) complexes in DNA cleavage: clues for design of new efficient metallo-hydrolases.

作者信息

Bazzicalupi Carla, Bencini Andrea, Bonaccini Claudia, Giorgi Claudia, Gratteri Paola, Moro Stefano, Palumbo Manlio, Simionato Alessandro, Sgrignani Jacopo, Sissi Claudia, Valtancoli Barbara

机构信息

Dipartimento di Chimica, Università degli Studi di Firenze, Via della Lastruccia 3, 50019, Sesto Fiorentino, Firenze, Italy.

出版信息

Inorg Chem. 2008 Jun 16;47(12):5473-84. doi: 10.1021/ic800085n. Epub 2008 May 10.

Abstract

The hydrolytic ability toward plasmid DNA of a mononuclear and a binuclear Zn(II) complex with two macrocyclic ligands, containing respectively a phenanthroline (L1) and a dipyridine moiety (L2), was analyzed at different pH values and compared with their activity in bis( p-nitrophenyl)phosphate (BNPP) cleavage. Only the most nucleophilic species [ZnL1(OH)]+ and [Zn2L2(OH)2]2+, present in solution at alkaline pH values, are active in BNPP cleavage, and the dinuclear L2 complex is remarkably more active than the mononuclear L1 one. Circular dichroism and unwinding experiments show that both complexes interact with DNA in a nonintercalative mode. Experiments with supercoiled plasmid DNA show that both complexes can cleave DNA at neutral pH, where the L1 and L2 complexes display a similar reactivity. Conversely, the pH-dependence of their cleavage ability is remarkably different. The reactivity of the mononuclear complex, in fact, decreases with pH while that of the dinuclear one is enhanced at alkaline pH values. The efficiency of the two complexes in DNA cleavage at different pH values was elucidated by means of a quantum mechanics/molecular mechanics (QM/MM) study on the adducts between DNA and the different complexed species present in solution.

摘要

分析了分别含有菲咯啉(L1)和联吡啶部分(L2)的两个大环配体的单核和双核Zn(II)配合物对质粒DNA的水解能力,并在不同pH值下与它们在双(对硝基苯基)磷酸酯(BNPP)裂解中的活性进行了比较。只有在碱性pH值下存在于溶液中的最亲核的物种[ZnL1(OH)]⁺和[Zn₂L2(OH)₂]²⁺在BNPP裂解中具有活性,并且双核L2配合物比单核L1配合物的活性明显更高。圆二色性和解旋实验表明,两种配合物均以非嵌入模式与DNA相互作用。超螺旋质粒DNA实验表明,两种配合物均可在中性pH下切割DNA,其中L1和L₂配合物表现出相似的反应性。相反,它们切割能力的pH依赖性明显不同。事实上,单核配合物的反应性随pH降低,而双核配合物的反应性在碱性pH值下增强。通过对DNA与溶液中存在的不同络合物种之间的加合物进行量子力学/分子力学(QM/MM)研究,阐明了两种配合物在不同pH值下切割DNA的效率。

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