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A New Functional Model of Catechol Dioxygenases: Properties and Reactivity of [Fe(BLPA)DBC]BPh4

机译:邻苯二酚双加氧酶的新功能模型:[Fe(BLPA)DBC] BPh4的性质和反应性

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[FeⅢ(BLPA)DBC]BPh4, a new functional model for the catechol dioxygenases, has been synthesized, where BLPA is bis((6-methyl-2-pyridyl)methyl)(2-pyridylmethyl)am ine and DBC is 3,5-di-tert-butylcatecholate dianion. The BLPA complex has a structural feature that iron center has a six-coordinate geometry with N4O2 donor set. It exhibits EPR signals at g=5.5 and 8.0 which are typical values for the high-spin FeⅢ (S=5/2) complex with axial symmetry. The BLPA complex reacts with O2 within a few hours to afford intradiol cleavage (75%) and extradiol cleavage (15%) products which is very unique result of all [Fe(L)DBC] complexes studied. The iron-catecholate interaction of BLPA complex is significantly stronger, resulting in the enhanced covalency of the metal-catecholate bonds and low energy catecholate to FeⅢ charge transfer bands at 583 and 962 nm in CH3CN. The enhanced covalency is also reflected by the isotropic shifts exhibited by the DBC protons, which indicate increased semiquinone character. The greater semiquinone character in the BLPA complex correlates well with its high reactivity towards O2. Kinetic studies of the reaction of the BLPA complex with 1 atm O2 in CH3OH and CH2Cl2 under pseudo-first order conditions show that the BLPA complex reacts with O2 much slower than the TPA complex, where TPA is tris(2-pyridylmethyl)amine. It is presumably due to the steric effect of the methyl substituent on the pyridine ring. Nevertheless, both the high specificity and the fast kinetics can be rationalized on the basis of its low energy catecholate to FeⅢ charge transfer bands and large isotropic NMR shifts for the BLPA protons. These results provide insight into the nature of the oxygenation mechanism of the catechol dioxygenases.
机译:合成了儿茶酚双加氧酶的新功能模型[FeⅢ(BLPA)DBC] BPh4,其中BLPA为双((6-甲基-2-吡啶基)甲基)(2-吡啶基甲基)胺,DBC为3, 5-二叔丁基邻苯二酚二阴离子。 BLPA复合体的结构特征是,铁中心具有六坐标几何结构,并带有N4O2供体。它在g = 5.5和8.0处显示EPR信号,这是具有轴向对称性的高旋转FeⅢ(S = 5/2)配合物的典型值。 BLPA配合物在数小时内与O2反应,得到二醇内裂解(75%)和二醇外裂解(15%)的产物,这是所有研究的[Fe(L)DBC]络合物的非常独特的结果。 BLPA配合物的铁-儿茶酚酸酯相互作用明显更强,导致CH3CN中金属-儿茶酚酸酯键和低能儿茶酚酸酯与FeⅢ电荷转移带的共价性增强。共价性的提高也通过DBC质子表现出的各向同性位移来反映,这表明半醌特性增加。 BLPA复合物中较大的半醌特性与其对O2的高反应性密切相关。在假一级反应条件下,BLPA配合物与1个atm O2在CH3OH和CH2Cl2中的反应动力学研究表明,BLPA配合物与O2的反应要比TPA配合物(TPA是三(2-吡啶基甲基)胺)慢得多。据推测是由于甲基取代基在吡啶环上的空间效应。尽管如此,高特异性和快速动力学都可以通过其低的儿茶酚酸到FeⅢ电荷转移带以及BLPA质子的大的各向同性NMR位移来合理化。这些结果提供了对儿茶酚双加氧酶的氧化机制的性质的了解。

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