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芳基金属钌(II)配合物[(η-CH)Ru(L)Cl]PF(L = o-fpip 和 p-fpip)与 RNA 三聚体 poly(U)*poly(A)•poly(U)的相互作用。

Interaction of arene ruthenium(II) complexes [(η-CH)Ru(L)Cl]PF (L = o-fpip and p-fpip) with the RNA triplex poly(U)*poly(A)•poly(U).

机构信息

College of Chemistry, Xiangtan University, Xiangtan 411105, People's Republic of China.

Academic Affairs Office, Xiangtan University, Xiangtan 411105, People's Republic of China.

出版信息

J Inorg Biochem. 2022 Jul;232:111813. doi: 10.1016/j.jinorgbio.2022.111813. Epub 2022 Apr 5.

Abstract

To comprehend the binding properties of η-arene Ru(II) complexes with poly(U)*poly(A)•poly(U) triplex, two arene Ru(II) complexes with different fluorine substituent positions, [(η-CH)Ru(o-fpip)Cl]PF (Ru1,η-CH = benzene ring, o-fpip = 2-(2'‑fluorine) imidazo [4,5-f] Biver et al. (2008), Gupta et al. (2012) [1, 10] phenanthroline) and [(η-CH)Ru(p-fpip)Cl]PF (Ru2,η-CH = benzene ring, o-fpip = 2-(4'‑fluorine) imidazo [4,5-f] Biver et al. (2008), Gupta et al. (2012) [1, 10] phenanthroline), have been synthesized and characterized in this study. The binding of Ru1 and Ru2 with poly(U)*poly(A)•poly(U) triplex has been investigated by viscosity measurement and spectroscopic methods. Analysis of UV-Vis absorption spectral titrations suggests that Ru1 and Ru2 bind to the triplex through an intercalative mode, but the binding affinity of Ru2 is slightly higher than that of Ru1, which is also verified by viscosity and EB (ethidium bromide) competition measurements. Furthermore, the thermal denaturation experiment shows that Ru1 and Ru2 increase the third-strand stabilization to a similar extent. Interestingly, the two complexes have essentially no effect on the stabilization of the template duplex. Considering the structure of Ru1 and Ru2, conceivably besides the intercalation of ligand, the force stabilizing the triplex should also involve covalent binding and electrostatic interaction. The obtained results will contribute to our understanding of the interaction of arene Ru(II) complexes with the poly(U)*poly(A)•poly(U) triplex.

摘要

为了理解 η-芳烃 Ru(II)配合物与聚(U)*聚(A)•聚(U)三聚体的结合性质,我们合成并表征了两个具有不同氟取代位置的芳烃 Ru(II)配合物,[(η-CH)Ru(o-fpip)Cl]PF(Ru1,η-CH=苯环,o-fpip=2-(2'-氟)咪唑[4,5-f]Biver 等人,2008 年;Gupta 等人,2012 年)[1,10]菲咯啉)和[(η-CH)Ru(p-fpip)Cl]PF(Ru2,η-CH=苯环,o-fpip=2-(4'-氟)咪唑[4,5-f]Biver 等人,2008 年;Gupta 等人,2012 年)[1,10]菲咯啉)。通过粘度测量和光谱方法研究了 Ru1 和 Ru2 与聚(U)*聚(A)•聚(U)三聚体的结合。紫外可见吸收光谱滴定分析表明,Ru1 和 Ru2 通过嵌入模式与三聚体结合,但 Ru2 的结合亲和力略高于 Ru1,这也通过粘度和 EB(溴化乙锭)竞争测量得到验证。此外,热变性实验表明,Ru1 和 Ru2 对第三链的稳定作用相似。有趣的是,这两个配合物对模板双链的稳定作用几乎没有影响。考虑到 Ru1 和 Ru2 的结构,除了配体的嵌入外,稳定三聚体的力还应涉及共价键合和静电相互作用。所得结果将有助于我们理解芳烃 Ru(II)配合物与聚(U)*聚(A)•聚(U)三聚体的相互作用。

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