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2,2'-联吡啶与正电侧基的铜配合物对双链DNA的切割作用

Double-strand DNA cleavage by copper complexes of 2,2'-dipyridyl with electropositive pendants.

作者信息

An Yan, Tong Ming-Liang, Ji Liang-Nian, Mao Zong-Wan

机构信息

School of Chemistry and Chemical Engineering, Sun Yat-Sen University, Guangzhou, 510275, China.

出版信息

Dalton Trans. 2006 May 7(17):2066-71. doi: 10.1039/b516132k. Epub 2006 Jan 31.

Abstract

Two highly charged cationic copper(II) complexes have been synthesized and characterized structurally and spectroscopically: Cu(L1)2(Br)5 (1) and Cu(L2)2(Br)5 (2) (L1= 5,5'-di(1-(triethylammonio)methyl)-2,2'-dipyridyl cation and L2= 5,5'-di(1-(tributylammonio)methyl)-2,2'-dipyridyl cation bidentate ligands). X-Ray structures show that Cu(II) ions in both complexes have a trigonal-bipyramidal CuN4Br-configuration. Two nitrogen atoms of the electropositive pendants and coordinated bromine atom basically array in a straight line. Their close distances of N[dot dot dot]Br atoms are 5.772 and 5.594 A, respectively, which is comparable to that of adjacent phosphodiesters in B-form DNA (ca. 6 A). In the absence of reducing agent, supercoiled plasmid DNA cleavage by the complexes has been performed and their hydrolytic mechanisms have been investigated. The pseudo-Michaelis-Menten kinetic parameters (kcat), 4.15 h(-1) for 1, 0.43 h(-1) for 2 and 0.61 h(-1) for [Cu(bipy)(NO3)2], were obtained. This result indicates that 1 exhibits markedly higher nuclease activity than its corresponding analogues. The high ability of DNA cleavage for 1 is attributed to the effective cooperation of the metal moiety and two positive pendants since the array of linear tri-binding sites matches with one of three phosphodiester backbones of nucleic acid.

摘要

已合成了两种高电荷阳离子铜(II)配合物,并通过结构和光谱进行了表征:Cu(L1)2(Br)5(1)和Cu(L2)2(Br)5(2)(L1 = 5,5'-二(1-(三乙铵基)甲基)-2,2'-联吡啶阳离子,L2 = 5,5'-二(1-(三丁铵基)甲基)-2,2'-联吡啶阳离子双齿配体)。X射线结构表明,两种配合物中的Cu(II)离子均具有三角双锥CuN4Br构型。正电侧基的两个氮原子和配位的溴原子基本排列成一条直线。它们的N···Br原子的近距离分别为5.772和5.594 Å,这与B型DNA中相邻磷酸二酯的距离(约6 Å)相当。在没有还原剂的情况下,进行了配合物对超螺旋质粒DNA的切割,并研究了它们的水解机制。获得了伪米氏动力学参数(kcat),1为4.15 h(-1),2为0.43 h(-1),[Cu(bipy)(NO3)2]为0.61 h(-1)。该结果表明,1表现出比其相应类似物明显更高的核酸酶活性。1对DNA的高切割能力归因于金属部分和两个正电侧基的有效协同作用,因为线性三结合位点的排列与核酸的三个磷酸二酯主链之一相匹配。

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