首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis, magnetostructural correlation, and catalytic promiscuity of unsymmetric dinuclear copper(II) complexes: Models for catechol oxidases and hydrolases
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Synthesis, magnetostructural correlation, and catalytic promiscuity of unsymmetric dinuclear copper(II) complexes: Models for catechol oxidases and hydrolases

机译:非对称双核铜(II)配合物的合成,磁结构相关性和催化混杂:儿茶酚氧化酶和水解酶的模型

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Herein, we report the synthesis and characterization, through elemental analysis, electronic spectroscopy, electrochemistry, potentiometric titration, electron paramagnetic resonance, and magnetochemistry, of two dinuclear copper(II) complexes, using the unsymmetrical ligands N′,N′,N- tris(2-pyridylmethyl)-N-(2-hydroxy-3,5-di-tert-butylbenzyl)-1, 3-propanediamin-2-ol (L1) and N′,N′-bis(2-pyridylmethyl)-N,N-(2- hydroxybenzyl)(2-hydroxy-3,5-di-tert-butylbenzyl)-1,3-propanediamin-2-ol (L2). The structures of the complexes [Cu _2(L1)(μ-OAc)](ClO _4) _2?(CH _3) _2CHOH (1) and [Cu _2(L2)(μ-OAc)](ClO _4)?H _2O?(CH _3) _2CHOH (2) were determined by X-ray crystallography. The complex [Cu _2(L3)(μ-OAc)] ~(2+) [3; L3 = N-(2-hydroxybenzyl)-N′,N′,N-tris(2-pyridylmethyl)-1, 3-propanediamin-2-ol] was included in this study for comparison purposes only (Neves et al. Inorg. Chim. Acta2005, 358, 1807-1822). Magnetic data show that the Cu ~(II) centers in 1 and 2 are antiferromagnetically coupled and that the difference in the exchange coupling J found for these complexes (J = -4.3 cm ~(-1) for 1 and J = -40.0 cm ~(-1) for 2) is a function of the Cu-O-Cu bridging angle. In addition, 1 and 2 were tested as catalysts in the oxidation of the model substrate 3,5-di-tert-butylcatechol and can be considered as functional models for catechol oxidase. Because these complexes possess labile sites in their structures and in solution they have a potential nucleophile constituted by a terminal Cu ~(II)-bound hydroxo group, their activity toward hydrolysis of the model substrate 2,4-bis(dinitrophenyl) phosphate and DNA was also investigated. Double electrophilic activation of the phosphodiester by monodentate coordination to the Cu ~(II) center that contains the phenol group with tert-butyl substituents and hydrogen bonding of the protonated phenol with the phosphate O atom are proposed to increase the hydrolase activity (K _(ass). and k _(cat).) of 1 and 2 in comparison with that found for complex 3. In fact, complexes 1 and 2 show both oxidoreductase and hydrolaseuclease activities and can thus be regarded as man-made models for studying catalytic promiscuity.
机译:在此,我们报告了使用不对称配体N',N',N- tris通过元素分析,电子光谱,电化学,电位滴定,电子顺磁共振和磁化学方法合成和表征了两种双核铜(II)配合物。 (2-吡啶基甲基)-N-(2-羟基-3,5-二叔丁基苄基)-1,3-丙二胺-2-醇(L1)和N',N'-双(2-吡啶基甲基)- N,N-(2-羟基苄基)(2-羟基-3,5-二叔丁基苄基)-1,3-丙二胺-2-醇(L2)。配合物[Cu _2(L1)(μ-OAc)](ClO _4)_2?(CH _3)_2CHOH(1)和[Cu _2(L2)(μ-OAc)](ClO _4)?H的结构通过X射线晶体学测定_2O 3(CH _3)_2CHOH(2)。络合物[Cu _2(L3)(μ-OAc)]〜(2+)[3; L3 = N-(2-羟基苄基)-N',N',N-三(2-吡啶基甲基)-1,3-丙二胺-2-醇]仅作比较之用(Neves等,Inorg Chim。Acta2005,358,1807-1822)。磁数据表明1和2中的Cu〜(II)中心是反铁磁耦合的,这些配合物的交换耦合J存在差异(1 = J = -4.3 cm〜(-1),J = -40.0 cm 2)的〜(-1)是Cu-O-Cu桥接角的函数。另外,在模型底物3,5-二叔丁基邻苯二酚的氧化中测试了1和2作为催化剂,可以将其视为邻苯二酚氧化酶的功能模型。因为这些复合物在其结构中具有不稳定的位点,并且在溶液中具有潜在的亲核基团,该亲核基团由末端与Cu〜(II)结合的羟基构成,所以它们对模型2,4-双(二硝基苯基)磷酸酯和DNA水解的活性还进行了调查。提出通过单齿配位到含叔丁基取代基苯酚基团的Cu〜(II)中心对磷酸二酯进行双亲电活化,以及质子化苯酚与磷酸O原子的氢键结合,以提高水解酶的活性(K_( ass)和k _(cat)。)与配合物3的结果相比。实际上,配合物1和2同时显示氧化还原酶和水解酶/核酸酶的活性,因此可以看作是模型的人造模型。研究催化混杂。

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