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Active site models for galactose oxidase containing two different phenol groups

机译:包含两个不同酚基团的半乳糖氧化酶的活性位点模型

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Model complexes of the active site of galactose oxidase (GAO) have been developed using a new ligand carrying two different phenol groups, N-[(2-hydroxy-3-methylthio-5-tert-butylphenyl)methyl]-N-[(2-hydroxy-3, 5-di-tert-butylphenyl)methyl]-2-(2-pyridyl)ethylamine (L1H(2)). Deprotonated ligand L1(2-) forms a dimeric Cu(II) complex, [Cu(II)(2)(L1(2-))(2)], in the solid state, the structure of which has been determined by X-ray crystallographic analysis. The dimeric Cu(II)-diphenolate complex can be converted into the monomeric complex, [Cu(II)(L1(2-))(X)] (X = py, AcO, and PhCH2OH), in solution by adding exogenous ligands such as pyridine (py), acetate (AcO-), or benzyl alcohol (PhCH2OH). The structure and physicochemical properties (UV-Vis, ESR, redox potential) of [Cu(II)(L1(2-))(X)] have been explored as a model for the resting state of the enzyme. One-electron oxidation of [Cu(II)(L1(2-))(py)] and [Zn(II)(L1(2-))(py)] by (NH4)(2)[Ce-IV(NO3)(6)] (CAN) yielded the corresponding phenoxyl radical/phenolate complexes, Cu(II)(L1(.-)) and Zn(II)(L1(.-)), respectively, which have also been characterized by UV-Vis, resonance Raman, and ESR. The structure, physicochemical properties and reactivities of the diphenolate and phenoxyl radical/phenolate complexes of L1H(2) are compared to those of the corresponding monophenolate and monophenoxyl radical complexes in order to obtain further insight into the role of Tyr 495 in the native enzyme. (C) 2000 Elsevier Science S.A. All rights reserved. [References: 42]
机译:半乳糖氧化酶(GAO)活性位点的模型配合物已使用带有两个不同酚基团的新配体N-[((2-羟基-3-甲硫基-5-叔丁基苯基)甲基] -N-[( 2-羟基-3,5-二叔丁基苯基)甲基] -2-(2-吡啶基)乙胺(L1H(2))。去质子化的配体L1(2-)形成固态的二聚体Cu(II)[Cu(II)(2)(L1(2-))(2)],其结构已由X确定射线晶体学分析。通过添加外源配体,可以在溶液中将二聚体Cu(II)-二酚盐复合物转化为单体复合物[Cu(II)(L1(2-))(X)](X = py,AcO和PhCH2OH)例如吡啶(py),乙酸盐(AcO-)或苯甲醇(PhCH2OH)。已经研究了[Cu(II)(L1(2-))(X)]的结构和理化性质(UV-Vis,ESR,氧化还原电势)作为该酶静止状态的模型。 [Cu(II)(L1(2-))(py)]和[Zn(II)(L1(2-))(py)]的单电子氧化被(NH4)(2)[Ce-IV( NO3)(6)](CAN)分别产生相应的苯氧基自由基/酚盐配合物Cu(II)(L1(.-))和Zn(II)(L1(.-)),其特征还在于UV-Vis,共振拉曼和ESR。为了进一步了解Tyr 495在天然酶中的作用,将L1H(2)的双酚盐和苯氧基自由基/酚盐复合物的结构,理化性质和反应性与相应的单酚盐和单苯氧基自由基络合物的结构,理化性质和反应性进行了比较。 (C)2000 Elsevier Science S.A.保留所有权利。 [参考:42]

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