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钌(II)芳基配合物的光解及其与生物分子的后续相互作用:密度泛函理论研究。

Photodissociation of a ruthenium(II) arene complex and its subsequent interactions with biomolecules: a density functional theory study.

机构信息

MOE Key Laboratory of Bioinorganic and Synthetic Chemistry/KLGHEI of Environment and Energy Chemistry, School of Chemistry and Chemical Engineering, Sun Yat-Sen University, Guangzhou 510275, People's Republic of China.

出版信息

J Mol Model. 2012 Oct;18(10):4675-86. doi: 10.1007/s00894-012-1467-3. Epub 2012 Jun 1.

Abstract

The piano-stool Ru(II) arene complex [(η⁶-benz)Ru(bpm)(py)]²⁺ (benz = benzene, bpm = 2,2'-bipyrimidine, and py = pyridine), which is conventionally nonlabile (on a timescale and under conditions relevant for biological reactivity), can be activated by visible light to selectively photodissociate the monodentate ligand (py). In the present study, the aquation and binding of the photocontrolled ruthenium(II) arene complex [(η⁶-benz)Ru(bpm)(py)]²⁺ to various biomolecules are studied by density functional theory (DFT) and time-dependent DFT (TDDFT). Potential energy curves (PECs) calculated for the Ru-N (py) bonds in [(η⁶-benz)Ru(bpm)(py)]²⁺ in the singlet and triplet state give useful insights into the photodissociation mechanism of py. The binding energies of the various biomolecules are calculated, which allows the order of binding affinities among the considered nuleic-acid- or protein-binding sites to be discerned. The kinetics for the replacement of water in the aqua complex with biomolecules is also considered, and the results demonstrate that guanine is superior to other biomolecules in terms of coordinating with the Ru(II) aqua adduct, which is in reasonable agreement with experimental observations.

摘要

[(η⁶-苯)Ru(bpm)(py)]²⁺(苯=苯,bpm=2,2'-联嘧啶,py=吡啶)的钢琴凳 Ru(II)芳环配合物是常规稳定的(在与生物反应相关的时间尺度和条件下),但可以被可见光激活,从而选择性地光解单齿配体(py)。在本研究中,通过密度泛函理论(DFT)和含时密度泛函理论(TDDFT)研究了光控钌(II)芳环配合物[(η⁶-苯)Ru(bpm)(py)]²⁺与各种生物分子的水合和结合。[(η⁶-苯)Ru(bpm)(py)]²⁺中 Ru-N(py)键在单重态和三重态下的势能曲线(PECs)为 py 的光解机制提供了有用的见解。计算了各种生物分子的结合能,从而可以辨别所考虑的核酸或蛋白质结合位点之间的结合亲和力顺序。还考虑了水合配合物与生物分子取代水的动力学,结果表明鸟嘌呤在与 Ru(II)水合加合物配位方面优于其他生物分子,这与实验观察结果基本一致。

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