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首页> 外文期刊>Metallomics. integrated biometal science >Experimental and density functional theory (DFT) studies on the interactions of Ru(II) polypyridyl complexes with the RAN triplex poly(U)(center dot)poly(A)*poly(U)
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Experimental and density functional theory (DFT) studies on the interactions of Ru(II) polypyridyl complexes with the RAN triplex poly(U)(center dot)poly(A)*poly(U)

机译:实验和密度泛函理论(DFT)研究Ru(II)聚吡啶配合物与RAN三重链poly(U)(中心点)poly(A)* poly(U)的相互作用

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摘要

There is renewed interest in investigating triple helices because these novel structures have been implicated as a possible means of controlling cellular processes by endogenous or exogenous mechanisms. Due to the Hoogsteen base pairing, triple helices are, however, thermodynamically less stable than the corresponding duplexes. The poor stability of triple helices limits their practical applications under physiological conditions. In contrast to DNA triple helices, small molecules stabilizing RNA triple helices at present are less well established. Furthermore, most of these studies are limited to organic compounds and, to a far lesser extent, to metal complexes. In this work, two Ru(II) complexes, [Ru(bpy)(2)(btip)](2+) (Ru1) and [Ru(phen)(2)(btip)](2+) (Ru2), have been synthesized and characterized. The binding properties of the two metal complexes with the triple RNA poly(U)(center dot)poly(A)*poly(U) were studied by various biophysical and density functional theory methods. The main results obtained here suggest that the slight binding difference in Ru1 and Ru2 may be attributed to the planarity of the intercalative ligand and the LUMO level of Ru(II) complexes. This study further advances our knowledge on the triplex RNA-binding by metal complexes, particularly Ru(II) complexes.
机译:由于研究了这些新型结构,是通过内源或外源机制控制细胞过程的一种可能手段,因此人们对研究三重螺旋结构产生了新的兴趣。由于Hoogsteen碱基配对,三重螺旋在热力学上不如相应的双链螺旋稳定。三重螺旋的稳定性差,限制了它们在生理条件下的实际应用。与DNA三重螺旋相反,目前稳定RNA三重螺旋的小分子还不太成熟。此外,这些研究大多限于有机化合物,在较小程度上限于金属络合物。在这项工作中,两个Ru(II)络合物[Ru(bpy)(2)(btip)](2+)(Ru1)和[Ru(phen)(2)(btip)](2+)(Ru2) ,已经合成和表征。通过多种生物物理和密度泛函理论方法研究了两种金属配合物与三链RNA poly(U)(中心点)poly(A)* poly(U)的结合特性。此处获得的主要结果表明,Ru1和Ru2中的微小结合差异可能归因于嵌入配体的平面性和Ru(II)配合物的LUMO水平。这项研究进一步提高了我们对金属络合物(特别是Ru(II)络合物)的三链RNA结合的认识。

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