Alternative role of cisplatin in DNA damage-theoretical studies on the influence of excess electrons on the cisplatin-DNA complex

Shuang Zhao, Ru Bo Zhang*

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摘要

Reliable DFT calculations were used to gain insights into the effects of excess electrons on the cisplatin-DNA complex in a water solution. One electron injection is enough to break the two Pt-N7 bonds, which is driven by the rare symmetrical in-plane bending vibration. The dissociated [Pt(NH3)2]+ group from the cisplatin-DNA complex could combine with H2O in the surroundings to form a reactive species, which can abstract the most solvent accessible H4′ of the sugar with a barrier of ca. 17.5 kcal mol-1. Upon influence of the multiple electrons addition, the H4′-abstraction reaction by the stable radical anion is feasible with a lower barrier and is exothermic. Thereby, they have high efficiency for DNA damage. The synergic effect between the metal and the ligand is highlighted due to failure of the isolated [Pt(NH3)2]+ and [Pt(NH3)2]- to abstract H4′ of sugar because the overlap between the SOMO (on Pt) and the C4′H4′ anti-bonding orbital is zero. In the present studies, an alternate role of cisplatin in DNA damage was discovered, which strongly confirmed that the cisplatin-DNA complex is more vulnerable to attack from low-energy electrons.

源语言英语
页(从-至)83053-83059
页数7
期刊RSC Advances
6
86
DOI
出版状态已出版 - 2016

引用此

Zhao, S., & Zhang, R. B. (2016). Alternative role of cisplatin in DNA damage-theoretical studies on the influence of excess electrons on the cisplatin-DNA complex. RSC Advances, 6(86), 83053-83059. https://doi.org/10.1039/c6ra17919c