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重金属Cu2+增强农药甲萘威对ctDNA作用的光谱法研究
引用本文:张晓明,李国学,李东昊,闵顺耕,孙英.重金属Cu2+增强农药甲萘威对ctDNA作用的光谱法研究[J].光谱学与光谱分析,2007,27(3):517-520.
作者姓名:张晓明  李国学  李东昊  闵顺耕  孙英
作者单位:1. 中国农业大学理学院,北京,100094
2. 中国农业大学资源与环境学院,北京,100094
基金项目:中国农业大学科研创新启动基金
摘    要:运用荧光光谱和紫外吸收光谱研究了在Cu2 的参与下农药甲萘威与小牛胸腺DNA(ctDNA)的相互作用.实验结果表明,甲萘威可以嵌入小牛胸腺DNA的双链中形成DNA加合物,从而使甲萘威的荧光光谱发生猝灭.通过计算这种猝灭为静态猝灭.当有Cu2 的参与下,甲萘威的猝灭常数增大,结合位点数n也有很大的增加.通过对热力学函数的计算和分析,在有Cu2 参与时,金属离子可能在甲萘威分子与ctD-NA分子间起"离子架桥作用",使甲萘威分子与ctDNA分子间静电相互作用增强,故△H对△G的贡献增大.

关 键 词:甲萘威  小牛胸腺DNA  相互作用增强  重金属
文章编号:1000-0593(2007)03-0517-04
收稿时间:2005-12-16
修稿时间:2006-03-28

Interaction between Carbaryl and Calf Thymus DNA Enhanced via Cu2+
ZHANG Xiao-ming,LI Guo-xue,LI Dong-hao,MIN Shun-geng,SUN Ying.Interaction between Carbaryl and Calf Thymus DNA Enhanced via Cu2+[J].Spectroscopy and Spectral Analysis,2007,27(3):517-520.
Authors:ZHANG Xiao-ming  LI Guo-xue  LI Dong-hao  MIN Shun-geng  SUN Ying
Institution:1. College of Science, China Agricultural University, Beijing 100094, China 2. College of Resource and Environment, China Agricultural University, Beijing 100094, China
Abstract:The interaction between carbaryl and calf thymus DNA with Cu2+ was studied using fluorescence spectroscopy (FS) and UV spectrum. The quenching process was proved to be single static quenching and the quenching constant decreases with temperature increasing. The experimental results showed that the carbaryl can be intercalated into the twin-screw structure of calf thymus DNA, forming ctDNA-carbaryl adducts. The UV spectrum showed that ctDNA can also result in the increasing color and red shift. In the presence of Cu2+, it was discovered that the apparent association constant (Kalpha) increases and the binding sites number (n) of carbaryl molecules on ctDNA obviously increases. The interaction of the carbaryl and ctDNA was driven mainly by electrostatic force which was enhanced by Cu2+, thus the contribution of deltaH to deltaG increased in the presence of CU2+ So the interaction between carbaryl and calf thymus DNA was enhanced via Cu+.
Keywords:Carbaryl  ctDNA  Interaction enhanced  Heavy metal
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