首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Sterically hindered benzoates: a synthetic strategy for modeling dioxygen activation at diiron active sites in proteins
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Sterically hindered benzoates: a synthetic strategy for modeling dioxygen activation at diiron active sites in proteins

机译:立体位阻苯甲酸酯:模拟蛋白质中二价铁活性位点上双氧激活的合成策略

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摘要

Bulky terphenyl carboxylates and related benzyl-substituted benzoates have been used to assemble a variety of new diiron complexes analogous to nonheme diiron protein active sites. Through this conceptually simple approach, novel biomimetic structures have been accessed and biologically relevant oxidized intermediates and products have been isolated and characterized by both spectroscopic and X-ray crystallographic methods. Interesting similarities and differences in the observed chemistry of the iron(II) complexes, including ligand substitution and dioxygen actiation reactions, result from variation of the specific carboxylate and accompanying N-donor ligand structures. As a result, new insights have been obtained into structure/function relationship in carboxylate-rich nonheme diiron proteins.
机译:庞大的三苯基羧酸盐和相关的苄基取代的苯甲酸酯已被用于组装各种类似于非血红素二铁蛋白活性位点的新的二铁配合物。通过这种概念上简单的方法,已经获得了新颖的仿生结构,并且通过光谱学和X射线晶体学方法分离并鉴定了生物学上相关的氧化中间体和产物。铁(II)配合物的化学性质(包括配体取代和双氧激活反应)中有趣的相似之处和不同之处是特定羧酸盐和相应的N供体配体结构的变化所致。结果,已经获得了关于富含羧酸盐的非血红素二铁蛋白的结构/功能关系的新见解。

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