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Synthesis Crystal Structures and DNA Binding Properties of Zinc(II) Complexes with 3-Pyridine Aldoxime

机译:锌(II)与3-吡啶醛肟的配合物的合成晶体结构和DNA结合特性

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摘要

The employment of 3-pyridine aldoxime, (3-py)CHNOH, in ZnII chemistry has afforded two novel compounds: [Zn(acac)2{(3-py)CHNOH}]·H2O (>1·H2O) [where acac is the pentane-2,4-dionato(-1) ion] and [Zn2(O2CMe)4{(3-py)CHNOH}2] (>2). Complex >1·H2O crystallizes in the monoclinic space group P21. The ZnII ion is five-coordinated, surrounded by four oxygen atoms of two acac moieties and by the pyridyl nitrogen atom of the (3-py)CHNOH ligand. Molecules of >1 interact with the water lattice molecules forming a 2D hydrogen-bonding network. Complex >2 crystallizes in the triclinic P-1 space group and displays a dinuclear paddle-wheel structure. Each ZnII exhibits a perfect square pyramidal geometry, with four carboxylate oxygen atoms at the basal plane and the pyridyl nitrogen of one monodentate (3-py)CHNOH ligand at the apex. DNA mobility shift assays were performed for the determination of the in vitro effect of both complexes on the integrity and the electrophoretic mobility of pDNA.
机译:在Zn II 化学中使用3-吡啶醛肟(3-py)CHNOH提供了两种新型化合物:[Zn(acac)2 {(3-py)CHNOH}]·H2O( > 1 ·H2O)[其中acac -是戊烷2,4-dionato(-1)离子]和[Zn2(O2CMe)4 {(3-py) CHNOH} 2](> 2 )。络合物> 1 ·H2O在单斜空间群P21 / n中结晶。 Zn II 离子是五配位的,被两个acac -部分的四个氧原子和(3-py)CHNOH配体的吡啶基氮原子包围。 > 1 分子与水晶格分子相互作用形成2D氢键网络。复合物> 2 在三斜P-1空间群中结晶,并显示出双核桨轮结构。每个Zn II 都显示出完美的方形金字塔形几何结构,在基面上具有四个羧酸氧原子,在顶点具有一个单齿(3-py)CHNOH配体的吡啶基氮。进行DNA迁移率迁移测定法以确定两种复合物对pDNA的完整性和电泳迁移率的体外作用。

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