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配体修饰的 LNA 双链体中的潜在交联过渡金属配合物(M = Ni、Cu、Zn)。

Potential cross-linking transition metal complexes (M = Ni, Cu, Zn) in the ligand-modified LNA duplexes.

机构信息

Department of Chemistry, University of Eastern Finland, Joensuu Campus P.O. Box 111, FI-80101, Joensuu, Finland.

出版信息

J Phys Chem B. 2010 Sep 16;114(36):11942-8. doi: 10.1021/jp105528y.

Abstract

Options for interstrand DNA duplex linkages have been studied by incorporating transition metal ions in the ligand-functionalized LNA (locked nucleic acid) duplexes. The effect of first-row transition metal ions (M = Ni(2+), Cu(2+), and Zn(2+)) on the geometries and formation energies of mono- and dimetallic model complexes was calculated by DFT methods, and the results were compared with available experimental data. The results showed a clear preference for the formation of copper complexes over the corresponding nickel and zinc complexes, in agreement with the trends observed in the denaturation temperatures of the ligand-functionalized LNA duplexes. In addition, dichloride bridged dimeric complex, L(LNA)Cu(μ-Cl)(2)CuL(LNA), in which L(LNA) is N,N-bis(2-pyridylmethyl)-β-alanyl functionalized LNA, was found energetically very stable, providing a potential structural option for an interstrand duplex linkage. The model complex and its simpler structural analogues were synthesized and structurally characterized. Comparison of the dimeric linker introduced into duplex tetramer strands, which provided a computational model for a double helix with two closely located LNA units, with a similar model for mononuclear Cu(L(LNA))(2)(2+) linker also showed a clear preference of the dichloride-bridged option, suggesting that the L(LNA)Cu(μ-Cl)(2)CuL(LNA) complex produced a chemically realistic model to explain duplex stabilization in the presence of Cu(2+) and excess Cl(-).

摘要

已通过在配体功能化 LNA(锁核酸)双链体中引入过渡金属离子来研究 DNA 双链体间键联的选择。通过 DFT 方法计算了第一过渡金属离子(M = Ni(2+),Cu(2+)和 Zn(2+))对单金属和双金属模型配合物的几何形状和形成能的影响,并将结果与现有实验数据进行了比较。结果表明,与配体功能化 LNA 双链体的变性温度所观察到的趋势一致,铜配合物的形成明显优于相应的镍和锌配合物。此外,还发现桥连二聚体复合物[L(LNA)Cu(μ-Cl)(2)CuL(LNA)](2+)(其中 L(LNA)是 N,N-双(2-吡啶基甲基)-β-丙氨酸功能化的 LNA)在能量上非常稳定,为链间双链体键联提供了潜在的结构选择。合成并结构表征了模型配合物及其更简单的结构类似物。将引入双链四聚体链中的二聚体接头与单核 Cu(L(LNA))(2)(2+)接头的类似模型进行比较,该模型提供了一个具有两个紧密相邻 LNA 单元的双螺旋的计算模型,也表明了二氯桥联的选择具有明显的优势,表明[L(LNA)Cu(μ-Cl)(2)CuL(LNA)](2+)复合物产生了一种化学上合理的模型,可以解释在存在 Cu(2+)和过量 Cl-时双链体的稳定化。

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