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Copper complexes of polyaza[n]cyclophanes and their interaction with DNA and RNA

机译:聚氮杂[n]环烷的铜配合物及其与DNA和RNA的相互作用

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The complexation properties of Cu~(2+) ions with the cyclophane receptors 2,6,9,13-tetraaza[14]metacyclophane (Ll), . 2,6.10,13,17.21-hexaaza[22]metacyclophane (L2) and 2,6,10,13,17,21-hexaaza[22]paracyclophane (L3) are presented. Formation of mononuclear complexes in the case of Ll and of mono- and binuclear complexes in the case of the hexaaazcyclophane ligands L2 and L3 is observed. The coordination numbers around each Cu2 + in the binuclear complexes involve at most three nitrogen donors for each metal ion. Cyclophanes Ll-L3 and several acyclic polyamine ligands are tested for their affinity towards double-stranded nucleic acid models of RNA and DNA. The binding affinity of the acyclic and macrocyclic polyamines towards DNA and RNA models, measured by changes in their melting temperature AT M' increases progressively with the average number of charges present on the amine, with higher stabilisation for RNA. Unusually large differences of up to A(AT M) = 30°C were observed with tripropylenetetraamine (Ll5) and with the macrocyclic amines (L2 and L3). Introduction of copper in the ligands leads to considerable affinity variations. One macrocyclic copper complex (with L3) shows a strong discriminatioB between the RNA and DNA polymers with a record value of AAT M = 41°C, and a small destabilisation of the DNA. The copper complexes exhibit nuclease activity; with plasmid DNA nicking was increased by one complex by a factGr of k/kun = 107. Experiments with hydroxyl radical quenchers indicate a predominant redox cleavage mechanism.
机译:Cu〜(2+)离子与环庚烯受体2,6,9,13-四氮杂[14]环庚烯(L1)的络合性质。呈现了2,6.10,13,17.21-六氮杂[22]间环phane(L2)和2,6,10,13,17,17-21-六氮杂[22]对杂环(L3)。在L1的情况下观察到单核复合物的形成,在六氮杂环烷配体L2和L3的情况下观察到单核和双核复合物的形成。双核络合物中每个Cu2 +周围的配位数涉及每个金属离子最多三个氮供体。测试了环烷L1-L3和几种无环多胺配体对RNA和DNA的双链核酸模型的亲和力。通过其熔化温度AT M'的变化测量,无环和大环多胺对DNA和RNA模型的结合亲和力随着胺上存在的平均电荷数逐渐增加,对RNA的稳定性更高。用三亚丙基四胺(L15)和大环胺(L2和L3)观察到异常高的差异,高达A(AT M)= 30°C。铜在配体中的引入导致相当大的亲和力变化。一种大环铜配合物(具有L3)显示出RNA和DNA聚合物之间的强区别性,记录值AAT M = 41°C,并且DNA不稳定。铜配合物表现出核酸酶活性。质粒DNA的切口被k / kun = 107的事实Gr增加了一个复合物。羟基自由基猝灭剂的实验表明了主要的氧化还原裂解机制。

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