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阳离子金属卟啉与四螺旋DNA相互作用的研究
引用本文:李全文,张玲,郭江宁,李健灵. 阳离子金属卟啉与四螺旋DNA相互作用的研究[J]. 广东医药学院学报, 2014, 0(3): 278-284
作者姓名:李全文  张玲  郭江宁  李健灵
作者单位:[1]中山市东区食品药品监督所,广东中山528400 [2]中山市健康科技产业基地发展有限公司,广东中山528437
摘    要:目的探讨金属阳离子卟啉的合成方法及与四螺旋DNA的相互作用方式。方法采用紫外可见吸收光谱、圆二色谱和荧光光谱等方法对一系列阳离子卟啉与四螺旋DNA的结合模式、结合常数及稳定四螺旋DNA情况进行研究。结果自由阳离子卟啉及金属铜卟啉可以插入到四螺旋DNA的碱基序列中,与四螺旋DNA的结合常数分别达到8.2×10^4和7.4×10^4,锌卟啉和锰卟啉分别采用堆积和沟面结合方式与四螺旋DNA相结合,结合常数分别为3.3×10^4和2.9×10^4。结论金属阳离子卟啉与四螺旋DNA的作用情况受到配位金属离子的影响;四配位的金属卟啉具有更高的DNA亲和力,有望作为潜在的抗肿瘤药物。

关 键 词:金属卟啉化合物  四螺旋DNA  相互作用  抗肿瘤药物

Study on the interaction between cationic metallo-porphyrins and G-quadruplex DNA
LI Quanwen,ZHANG Ling,GUO Jiangning,LI Jianling. Study on the interaction between cationic metallo-porphyrins and G-quadruplex DNA[J]. , 2014, 0(3): 278-284
Authors:LI Quanwen  ZHANG Ling  GUO Jiangning  LI Jianling
Affiliation:1. Eastern District of Zhongshan city food and drug supervision, Zhongshan 52540, China; 2. Zhongshan Health Technology Park Development Company Limited, Zhoagshan 528437, China)
Abstract:Objective To study the synthesis methods of a serious of cationic metallo-porphyrins and their interaction with G-quadruplex DNA.Methods The binding modes and intrinsic binding constants(Kb) of cationic metallo-porphyrins with G-quadruplex DNA were studied comparatively by the combination of absorption spectroscopy,circular dichroism(CD) spectroscopy and fluorescence spectroscopy.Results It was found that the free porphyrin and Cu(II) porphyrin could insert into the bases of G-quadruplex DNA,with Kb values of 8.2 × 10^4and 7.4 × 10^4,respectively.However,Zn(II) and Mn(III) porphyrins employed outside binding and groove binding modes to bind with G4 DNA,with Kbvalues of 3.3×104and 2.9×10^4,respectively.Conclusion The interaction of these porphyrins with G-quadruplex DNA was significantly influenced by different metals coordinated with the porphyrin plane.Metallo-porphyrins with four-coordination structure had higher binding affinities and thus was better anti-cancer candidates than other metallo-porphyrins.
Keywords:cationic metallo-porphyrin  G4-DNA  interaction  anti-cancer drug
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