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Mononuclear Fe(ii)-N4Py complexes in oxidative DNA cleavage: Structure, activity and mechanism

机译:单核Fe(ii)-N4Py配合物在氧化性DNA切割中的结构,活性和机理

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摘要

A series of monotopic N4Py (N,N-bis(2-pyridylmethyl)-N-bis(2-pyridyl) methylamine, 1) derived ligands have been prepared and evaluated in the iron catalyzed oxidative cleavage of pUC18 DNA, in the presence and absence of external reducing agent DTT. The mononuclear iron(ii) complexes induce efficient DNA cleavage in air with a low catalyst loading. It was demonstrated that covalent attachment of 9-aminoacridine, ammonium group or 1,8-naphthalimide leads to increased DNA cleavage activity in the presence of a reductant. Also some complexes displayed a small degree of double-strand DNA cleavage activity. In contrast, in the absence of reducing agent, no beneficial effect of the covalently attached DNA binding moieties was observed, which was attributed to the reduction from Fe(iii) to Fe(ii), which is required for oxygen activation, becoming rate limiting. Mechanistic investigations revealed an important role for superoxide radicals. A proposed mechanism involves the formation of an Fe(iii)-OOH intermediate as the active species or precursor.
机译:制备了一系列单峰N4Py(N,N-双(2-吡啶基甲基)-N-双(2-吡啶基)甲胺1)衍生的配体,并在存在和不存在的条件下在铁催化的pUC18 DNA氧化裂解中进行了评估。不含外部还原剂DTT。单核铁(ii)配合物可在空气中以低催化剂负载诱导有效的DNA裂解。已经证明,在还原剂存在下,9-氨基ac啶,铵基或1,8-萘二甲酰亚胺的共价连接导致增加的DNA裂解活性。另外,一些复合物显示出较小程度的双链DNA切割活性。相反,在不存在还原剂的情况下,未观察到共价连接的DNA结合部分的有益作用,这归因于氧活化所需的从Fe(iii)还原为Fe(ii),成为速率限制。 。机理研究表明,超氧自由基具有重要作用。提出的机制涉及形成Fe(iii)-OOH中间体作为活性物质或前体。

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