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Iron(III)-Catecholato Complexes as Structural and Functional Models of the Intradiol-Cleaving Catechol Dioxygenases

机译:铁(III) - 儿茶酚配合物作为内放二醇 - 裂解儿茶酚二氧化酶的结构和功能模型

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摘要

The structural and spectroscopic characterization of mononuclear iron(III)-catecholato complexes of ligand L4 (methyl bis(1-methylimidazol-2-yl)(2-hydroxyphenyl)methyl ether, HL4) are described, which closely mimic the enzyme-substrate complex of the intradiol-cleaving catechol dioxygenases. The tridentate, tripodal monoanionic ligand framework of L4 incorporates one phenolato and two imidazole donor groups and thus well reproduces the His2Tyr endogenous donor set. In fact, regarding the structural features of [FeIII(L4)(tcc)(H2O)] (5·H2O, tcc = tetrachlorocatechol) in the solid state, the complex constitutes the closest structural model reported to date. The iron(III)-catecholato complexes mimic both the structural features of the active site and its spectroscopic characteristics. As part of its spectroscopic characterization, the electron paramagnetic resonance (EPR) spectra were successfully simulated using a simple model that accounts for D strain. The simulation procedure showed that the observed g = 4.3 line is an intrinsic part of the EPR envelope of the studied complexes and should not necessarily be attributed to a highly rhombic impurity. [FeIII(L4)(dtbc)(H2O)] (dtbc = 3,5-di-tert-butylcatechol) was studied with respect to its dioxygen reactivity, and oxidative cleavage of the substrate was observed. Intradiol- and extradiol-type cleavage products were found in roughly equal amounts. This shows that an accurate structural model of the first-coordination sphere of the active site is not sufficient for obtaining regioselectivity.
机译:描述了配体L4(甲基双(1-甲基咪唑-2-基)(2-羟苯基)甲基醚,HL4)的单核铁(III)-邻苯二酚络合物的结构和光谱表征,类似于酶-底物复合物内二醇切割的儿茶酚双加氧酶。 L4的三齿三脚架单阴离子配体框架包含一个酚基和两个咪唑供体基团,因此可以很好地复制His2Tyr内源供体组。实际上,关于固态的[FeIII(L4)(tcc)(H2O)](5·H2O,tcc =四氯邻苯二酚)的结构特征,该配合物构成了迄今为止报道的最接近的结构模型。铁(III)-邻苯二酚络合物模拟了活性位点的结构特征及其光谱特征。作为其光谱表征的一部分,使用解释D应变的简单模型成功地模拟了电子顺磁共振(EPR)光谱。模拟过程表明,观察到的g = 4.3线是所研究复合物的EPR包络的内在部分,不一定应归因于高度菱形杂质。研究了[FeIII(L4)(dtbc)(H2O)](dtbc = 3,5-二叔丁基邻苯二酚)的双氧反应性,并观察到底物的氧化裂解。发现二醇内和二醇外型裂解产物的量大致相等。这表明活性位点的第一配位球的精确结构模型不足以获得区域选择性。

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