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A New Functional Model Complex of Extradiol-cleaving Catechol Dioxygenases: Properties and Reactivity of [Fe II (BLPA)DBCH]BPh4

机译:一种新的功能模型复杂的外二醇切割邻苯二酚双加氧酶:[Fe II(BLPA)DBCH] BPh4的性质和反应性。

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[FeII(BLPA)DBCH]BPh4 (1), a new functional model for the extradiol-cleaving catechol dioxygenases, has been synthesized, where BLPA is bis(6-methyl-2-pyridylmethyl)(2-pyridylmethyl)amine and DBCH is 3,5-di-tert-butylcatecholate monoanion. 1H NMR and EPR studies confirm that 1 has a high-spin Fe(II) (S = 2) center. The electronic spectrum of 1 exhibits one absorption band at 386 nm, showing the yellow color of the typical [Fe II (BLPA)] complex. Upon exposure to O2, 1 is converted to an intense blue species within a minute. This blue species exhibits two intense bands at 586 and 960 nm and EPR signals at g = 5.5 and 8.0 corresponding to the high-spin Fe(III) complex (S = 5/2, E/D = 0.11). This blue complex further reacts with O2 to be converted to ( レ-oxo)Fe III 2 complex within a few hours. Interestingly, 1 affords intradiol cleavage (65%) and extradiol cleavage (20%) products after the oxygenation. It can be suggested that 1 undergoes two different oxygenation pathways. The one takes the substrate activation mechanism proposed for the intradiol cleavage products after the oxidation of the Fe II to Fe III . The other involves the direct attack of O2 to Fe II center, forming the Fe III -superoxo intermediate which can give rise to the extradiol cleavage products. 1 is the first functional Fe(II) complex for extradiol-cleaving dioxygenases giving extradiol cleavage products.
机译:合成了[FeII(BLPA)DBCH] BPh4(1),该模型是用于裂解二醇的儿茶酚双加氧酶的新功能模型,其中BLPA是双(6-甲基-2-吡啶基甲基)(2-吡啶基甲基)胺,DBCH是3,5-二叔丁基邻苯二酚单阴离子。 1 H NMR和EPR研究证实1具有高自旋Fe(II)(S = 2)中心。 1的电子光谱在386 nm处显示一个吸收带,显示出典型的[Fe II(BLPA)]配合物的黄色。暴露于O2后,在一分钟内1转变为深蓝色。该蓝色物质在586和960 nm处显示两个强带,在g = 5.5和8.0处具有EPR信号,对应于高旋转Fe(III)配合物(S = 5/2,E / D = 0.11)。该蓝色络合物进一步与O2反应,在数小时内转化为(レ-氧代)Fe III 2络合物。有趣的是,氧合后,1提供了内部二醇裂解(65%)和外部二醇裂解(20%)的产物。可以建议1经历两种不同的氧化途径。一个采取的底物活化机制提出的内裂解的Fe II氧化为Fe III的二醇。另一个涉及氧气直接攻击Fe II中心,形成Fe III-超氧中间体,该中间体可产生额外的二醇裂解产物。图1是用于外二醇切割双加氧酶的第一功能性Fe(II)配合物,其给出了外二醇切割产物。

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