悬垂臂大环多胺单核和双核铜(II)配合物:作为DNA水解裂解剂的合成、表征和研究

Nichola Mccann, G. D. Iuliis, G. Lawrance, M. Maeder, K. Schrader, P. Moore
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引用次数: 3

摘要

基于10-甲基-1,4,8,12-四氮杂环戊烷-10-胺(1)母体,大环10-苄胺-10-甲基-1,4,8,12-四氮杂环戊烷(2),10-(2'-吡啶基甲氨基)- 10-甲基-1,4,8,1 -四氮杂环戊烷(3)和5-(羟甲基)-5'-(10 '-甲基-1,4,8 ',12 '-四氮杂环戊烷-10 '-氨基)-(2,2'-二吡啶)(4),以及对二甲苯连接的二核大环1,4-二(10'-甲基-1',4',8',12'-四氮杂环戊烷-10'-氨基甲基)苯(5)及其邻二甲苯类似物(6)作为游离配体和或铜(II)配合物被合成并进行了光谱表征。还报道了2 - 6的Cu(II)配合物的循环伏安法,其中参与络合的悬垂基团影响伏安行为。1、2、5和6及其Cu(II)配合物的电位滴定得到了pK(a)值。二聚体5和6,以及它们的单核类似物1和2,都被证明是低效的DNA水解裂解剂,同样的,基于3,7,11,17-四氮杂环[11.3.1]十六元-1(17),13,15-三烯框架的n -4大环的单核Cu(II)配合物也是如此(7)。单核三氮杂环Cu(II)配合物表现出更大的活性。在研究的其他双核体系中,相对刚性的室室配体3,13-二甲基-3,13-二硝基-1,5,11,15-四氮杂环二糖烷-8,18-二醇和-二硫醇的二铜(II)配合物也是非活性的。环环酮的1:1 Cu(II):L配合物及其N,N',N ',N ''-四元(甲基苄)取代类似物是无活性的,而四元(2-甲基吡啶)取代类似物作为2:1 Cu(II):L种多羟基四元(2'-甲基吡啶)-1,4,8,11-四氮杂环十四烷}铜(II)作为质粒DNA的切割剂是非常有效的,在速率常数(pH 7.6, 37℃,0.8 mM配合物)下观察到单链和双链切割步骤。0.12 mg/mL质粒)分别为1.2 × 10(-4)和3.5 × 10(-6) s(-1)。这是由于与磷酸二酯单元协同结合的能力,以及由两个金属中心之间的桥接激活的配位氢氧化物分子的亲核攻击。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mono- and Dinuclear Copper(II) Complexes of Pendant-Arm Macrocyclic Polyamines: Synthesis, Characterization and Investigation as Hydrolytic Cleavage Agents for DNA
Based on the 10-methyl-1,4,8,12-tetraazacyclopentadecane-10-amine (1) parent, macrocycles 10-benzylamine-10-methyl-1,4,8,12-tetraazacyclopentadecane (2), 10-(2'-pyridinylmethanamino) -10-methyl-1,4,8,1 2-tetraazacyclopentadecane (3) and 5-(hydroxymethyl)-5'-(10 ''-methyl-1 '',4 '',8 '',12 ''-tetraazacyclopentadecane-10 ''-amino)-(2,2'-dipyridine) (4), as well as the p-xylene-linked dinucleating macrocycle 1,4-bis( 10'-methyl-1',4',8',12'-tetraazacyclopentacecane-10'-aminomethyl)benzene (5) and its o-xylene analogue (6), have been synthesized as free ligands and or copper(II) complexes and characterized spectroscopically. Cyclic voltammetry of the Cu(II) complexes of 2 - 6 are also reported, with involvement of the pendant groups in complexation influencing voltammetric behaviour. Potentionnetric titrations of 1, 2, 5 and 6 and their Cu(II) complexes yielded pK(a) values. Both dimers 5 and 6, as well as their mononuclear close analogues 1 and 2, have proven to be inefficient as hydrolytic cleavage agents for DNA, as was also the case for mononuclear Cu(II) complexes of N-4-macrocycles with a range of N-pendant groups based on the 3,7,11,17-tetraazabicyclo[11.3.1]heptadeca-1(17),13,15-triene framework (7). Mononuclear triazamacrocyclic Cu(II) complexes show greater activity. Of other dinuclear systems examined, dicopper(II) complexes of the relatively rigid compartment ligands 3,13-dimethyl-3,13-dinitro-1,5,11,15-tetraazacycloeicosane-8,18-diol and -dithiol are also inactive. Whereas the 1:1 Cu(II):L complexes of cyclam and its N,N',N '',N '''-tetrakis(methylbenzyl) substituted analogue are inactive, the tetrakis(2-methylpyridine)-substituted analogue as a 2:1 Cu(II):L species mu-hydroxy {tetrakis(2'-methylpyridine)-1,4,8,11-tetraazacyclotetradecane} dicopper(II) is very efficient as a cleavage agent for plasmid DNA, with both single and double strand cleavage steps observed with rate constants (at pH 7.6, 37 degrees C, 0.8 mM complex, 0.12 mg/mL plasmid) of 1.2x10(-4) and 3.5x10(-6) s(-1) respectively. This is attributed to the capacity for concerted binding to the phosphodiester unit and nucleophilic attack by the coordinated hydroxide molecule that is activated by bridging between the two metal centres.
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