首页> 外文OA文献 >New Artificial Biomimetic Enzyme Analogues based on Iron(II/III) Schiff Base Complexes: An Effect of (Benz)imidazole Organic Moieties on Phenoxazinone Synthase and DNA Recognition
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New Artificial Biomimetic Enzyme Analogues based on Iron(II/III) Schiff Base Complexes: An Effect of (Benz)imidazole Organic Moieties on Phenoxazinone Synthase and DNA Recognition

机译:基于铁(II / III)Schiff碱基复合物的新的人工仿生酶类似物:(苯子)咪唑有机部分对苯氧吡嗪合酶和DNA识别的影响

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摘要

Elucidation of the structure and function of biomolecules provides us knowledge that can be transferred into the generation of new materials and eventually applications in e.g., catalysis or bioassays. The main problems, however, concern the complexity of the natural systems and their limited availability, which necessitates utilization of simple biomimetic analogues that are, to a certain degree, similar in terms of structure and thus behaviour. We have, therefore, devised a small library of six tridentate N-heterocyclic coordinating agents (L1−L6), which, upon complexation, form two groups of artificial, monometallic non-heme iron species. Utilization of iron(III) chloride leads to the formation of the 1:1 (Fe:Ln) ‘open’ complexes, whereas iron(II) trifluoromethanosulfonate allows for the synthesis of 1:2 (M:Ln) ‘closed’ systems. The structural differences between the individual complexes are a result of the information encoded within the metallic centre and the chosen counterion, whereas the organic scaffold influences the observed properties. Indeed, the number and nature of the external hydrogen bond donors coming from the presence of (benz)imidazole moieties in the ligand framework are responsible for the observed biological behaviour in terms of mimicking phenoxazinone synthase activity and interaction with DNA.
机译:阐明生物分子的结构和功能为我们提供了可转移到新材料的产生,最终在例如催化或生物测定中的应用。然而,主要问题涉及自然系统的复杂性及其有限的可用性,这需要利用简单的生物摩擦类似物,即在结构方面的一定程度上,类似的行为。因此,我们已经设计了六个三章N-杂环协调剂(L1-L6)的小文库,其在络合后,形成两组人工,单金属非血红素铁物种。使用铁(III)氯化物的利用导致形成1:1(Fe:Ln)'开放的复合物,而铁(II)三氟甲磺酸盐允许合成1:2(M:LN)'封闭的系统。各个复合物之间的结构差异是在金属中心和所选抗衡度内编码的信息的结果,而有机支架会影响观察到的性质。实际上,来自配体框架中的(苯子)咪唑部分存在的外部氢键供体的数量和性质是在模拟苯氧基酮合成酶活性和与DNA的相互作用方面负责观察到的生物学行为。

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