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首页> 外文期刊>Chemistry: A European journal >Oxygen-Depleted Calixarenes as Ligands for Molecular Models of Galactose Oxidase
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Oxygen-Depleted Calixarenes as Ligands for Molecular Models of Galactose Oxidase

机译:作为半乳糖氧化酶的分子模型作为配体作为配体的氧耗尽的钙屈剂

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A calix[4]arene ligand, in which two of the phenol functions are replaced by pyrazole units has been employed to mimic the His_2-Tyr_2 (His: histidine, Tyr: tyrosine) ligand sphere within the active site of the galactose oxidase (GO). The calixarene backbone forces the corresponding copper(II) complex into a see-saw-type structure, which is hitherto unprecedented in GO modelling chemistry. It undergoes a one-electron oxidation that is centered at the phenolate donor leading to a copper-coordinated phenoxyl radical like in the GO. Accordingly, the complex was tested as a functional model and indeed proved capable of oxidizing benzyl alcohol to the respective aldehyde using two phenoxyl-radical equivalents as oxidants. Finally, the results show that the calixarene platform can be utilized to arrange donor functions to biomimetic binding pockets that allow for the creation of novel types of model compounds.
机译:一种胶囊[4]芳烃配体,其中两种酚官能团被吡唑单元取代,以模仿His_2-Tyr_2(他的:组氨酸,Tyr:酪氨酸)配体球体(Go )。 Calixarene骨架力强制相应的铜(II)复合物进入锯切型结构,这是迄今为止在去建模化学方面前所未有的。 它经历了一种以酚醛化供体为中心的单电子氧化,导致铜配位的苯氧基自由基。 因此,将复合物作为功能模型进行测试,并且确实证明能够使用作为氧化剂的两种苯氧基自由基当量氧化苄醇以将苄醇氧化成相应的醛。 最后,结果表明,Calixarene平台可用于将供体功能安排到仿生粘合袋,允许创建新型模型化合物。

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