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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Novel square pyramidal iron(iii) complexes of linear tetradentate bis(phenolate) ligands as structural and reactive models for intradiol-cleaving 3,4-PCD enzymes: Quinone formation vs. intradiol cleavage
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Novel square pyramidal iron(iii) complexes of linear tetradentate bis(phenolate) ligands as structural and reactive models for intradiol-cleaving 3,4-PCD enzymes: Quinone formation vs. intradiol cleavage

机译:线性四齿双(酚盐)配体的新型方形金字塔铁(iii)配合物作为二醇内切割3,4-PCD酶的结构模型和反应模型:醌形成与二醇内切割

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摘要

The iron(iii) complexes of the bis(phenolate) ligands 1,4-bis(2-hydroxy-4- methyl-benzyl)-1,4-diazepane H_2(L1), 1,4-bis(2-hydroxy-4-nitrobenzyl) -1,4-diazepane H_2(L2), 1,4-bis(2-hydroxy-3,5-dimethylbenzyl)-1,4- diazepane H_2(L3) and 1,4-bis(2-hydroxy-3,5-di-tert-butylbenzyl)-1,4- diazepane H_2(L4) have been isolated and studied as structural and functional models for 3,4-PCD enzymes. The complexes [Fe(L1)Cl] 1, [Fe(L2)(H_2O)Cl] 2, [Fe(L3)Cl] 3 and [Fe(L4)Cl] 4 have been characterized using ESI-MS, elemental analysis, and absorption spectral and electrochemical methods. The single crystal X-ray structure of 3 contains the FeN_2O_2Cl chromophore with a novel square pyramidal (τ, 0.20) coordination geometry. The Fe-O-C bond angle (135.5°) and Fe-O bond length (1.855 ?) are very close to the Fe-O-C bond angles (133, 148°) and Fe-O(tyrosinate) bond distances (1.81, 1.91 ?) in 3,4-PCD enzyme. All the complexes exhibit two intense absorption bands in the ranges 335-383 and 493-541 nm, which are assigned respectively to phenolate (pπ) → Fe(iii) (dσ*) and phenolate (pπ) → Fe(iii) (dπ*) LMCT transitions. The Fe(iii)/Fe(ii) redox potentials of 1, 3 and 4 (E_(1/2), -0.882- -1.010 V) are more negative than that of 2 (E_(1/2), -0.577 V) due to the presence of two electron-withdrawing p-nitrophenolate moieties in the latter enhancing the Lewis acidity of the iron(iii) center. Upon adding H _2DBC pretreated with two equivalents of Et_3N to the iron(iii) complexes, two catecholate-to-iron(iii) LMCT bands (656, ε, 1030; 515 nm, ε, 1330 M~(-1) cm~(-1)) are observed for 2; however, interestingly, an intense catecholate-to-iron(iii) LMCT band (530-541 nm) is observed for 1, 3 and 4 apart from a high intensity band in the range 451-462 nm. The adducts [Fe(L)(DBC)]~- generated from 1-4in situ in DMF/Et_3N solution react with dioxygen to afford almost exclusively the simple two-electron oxidation product 3,5-di-tert-butylbenzoquinone (DBQ), which is discerned from the appearance and increase in intensity of the electronic spectral band around 400 nm, and smaller amounts of cleavage products. Interestingly, in DMF/piperidine the amount of quinone product decreases and those of the cleavage products increase illustrating that the stronger base piperidine enhances the concentration of the catecholate adduct. The rates of both dioxygenation and quinone formation observed in DMF/Et _3N solution vary in the order 1 > 3 > 4 < 2 suggesting that the ligand steric hindrance to molecular oxygen attack, the Lewis acidity of the iron(iii) center and the ability of the complexes to rearrange the Fe-O phenolate bonds to accommodate the catecholate substrate dictate the extent of interaction of the complexes with substrate and hence determine the rates of reactions. This is in line with the observation of DBSQ/H_2DBC reduction wave for the adduct [Fe(L2)(DBC)]~- at a potential (E _(1/2): -0.285 V) more positive than those for the adducts of 1, 3 and 4 (E_(1/2): -0.522 to -0.645 V).
机译:双(酚盐)配体1,4-双(2-羟基-4-甲基-苄基)-1,4-二氮杂ze H_2(L1),1,4-双(2-羟基- 4-硝基苄基)-1,4-二氮杂庚烷H_2(L2),1,4-双(2-羟基-3,5-二甲基苄基)-1,4-二氮杂庚烷H_2(L3)和1,4-双(2-羟基-3,5-二叔丁基苄基)-1,4-二氮杂庚烷H_2(L4)已被分离并作为3,4-PCD酶的结构和功能模型进行了研究。配合物[Fe(L1)Cl] 1,[Fe(L2)(H_2O)Cl] 2,[Fe(L3)Cl] 3和[Fe(L4)Cl] 4的特征已通过ESI-MS进行了元素分析,以及吸收光谱和电化学方法。 3的单晶X射线结构包含FeN_2O_2Cl发色团,该发色团具有新颖的方形锥体(τ,0.20)配位几何。 Fe-OC键角(135.5°)和Fe-O键长(1.855°)非常接近Fe-OC键角(133,148°)和Fe-O(酪氨酸盐)键间距离(1.81、1.91Ω)。 )加入3,4-PCD酶中。所有的配合物在335-383和493-541 nm范围内均表现出两个强烈的吸收带,分别对应于酚盐(pπ)→Fe(iii)(dσ*)和酚盐(pπ)→Fe(iii)(dπ)。 *)LMCT转换。 1,3和4(E_(1/2),-0.882- -1.010 V)的Fe(iii)/ Fe(ii)氧化还原电位比2(E_(1/2),-0.577 V)是由于在后者中存在两个吸电子对硝基苯酚酸酯部分,从而增强了铁(iii)中心的路易斯酸度。向铁(iii)络合物中添加用两当量的Et_3N预处理的H _2DBC时,两个邻苯二酚-铁(iii)LMCT带(656,ε,1030; 515 nm,ε,1330 M〜(-1)cm〜 (-1))观察2;然而,有趣的是,除了451-462 nm范围内的高强度谱带外,在1,3和4处观察到了强烈的儿茶酚酸铁(iii)LMCT谱带(530-541 nm)。从1-4在DMF / Et_3N溶液中原位生成的加合物[Fe(L)(DBC)]-与双氧反应,几乎只得到简单的双电子氧化产物3,5-二叔丁基苯醌(DBQ)从400nm附近的电子光谱带的出现和强度的增加以及少量裂解产物可以看出。有趣的是,在DMF /哌啶中,醌产物的量减少,而裂解产物的量增加,这说明较强的碱哌啶增强了儿茶酚加合物的浓度。在DMF / Et _3N溶液中观察到的双加氧和醌形成的速率依次为1> 3> 4 <2,表明配体对分子氧进攻的空间位阻,铁(iii)中心的路易斯酸度和能力配合物重新排列Fe-O酚盐键以适应儿茶酚酸酯底物的复杂程度决定了配合物与底物相互作用的程度,因此决定了反应速率。这与对加合物[Fe(L2)(DBC)]〜-的DBSQ / H_2DBC还原波的观察结果相符,其电势(E _(1/2):-0.285 V)比对加合物的正电位高1,3和4(E_(1/2):-0.522至-0.645 V)。

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