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由β-二酮亚胺和苯胺基-亚胺配体支撑的单铜-氧配合物的结构与反应活性表征

Characterization of the structure and reactivity of monocopper-oxygen complexes supported by beta-diketiminate and anilido-imine ligands.

作者信息

Gherman Benjamin F, Tolman William B, Cramer Christopher J

机构信息

Department of Chemistry and Supercomputer Institute, University of Minnesota, 207 Pleasant St. SE, Minneapolis, Minnesota 55455, USA.

出版信息

J Comput Chem. 2006 Dec;27(16):1950-61. doi: 10.1002/jcc.20502.

Abstract

Copper-oxygen complexes supported by beta-diketiminate and anilido-imine ligands have recently been reported (Aboelella et al., J Am Chem Soc 2004, 126, 16896; Reynolds et al., Inorg Chem 2005, 44, 6989) as potential biomimetic models for dopamine beta-monooxygenase (DbetaM) and peptidylglycine alpha-hydroxylating monooxygenase (PHM). However, in contrast to the enzymatic systems, these complexes fail to exhibit C--H hydroxylation activity (Reynolds et al., Chem Commun 2005, 2014). Quantum chemical characterization of the 1:1 Cu-O(2) model adducts and related species (Cu(III)-hydroperoxide, Cu(III)-oxo, and Cu(III)-hydroxide) indicates that the 1:1 Cu-O(2) adducts are unreactive toward substrates because of the weakness of the O--H bond that would be formed upon hydrogen-atom abstraction. This in turn is ascribed to the 1:1 adducts having both low reduction potentials and basicities. Cu(III)-oxo species on the other hand, determined to be intermediate between Cu(III)-oxo and Cu(II)-oxyl in character, are shown to be far more reactive toward substrates. Based on these results, design strategies for new DbetaM and PHM biomimetic ligands are proposed: new ligands should be made less electron rich so as to favor end-on dioxygen coordination in the 1:1 Cu-O(2) adducts. Comparison of the relative reactivities of the various copper-oxygen complexes as hydroxylating agents provides support for a Cu(II)-superoxide species as the intermediate responsible for substrate hydroxylation in DbetaM and PHM, and suggests that a Cu(III)-oxo intermediate would be competent in this process as well.

摘要

最近有报道称,由β-二酮亚胺和苯胺基亚胺配体支撑的铜-氧配合物(Aboelella等人,《美国化学会志》2004年,126卷,16896页;Reynolds等人,《无机化学》2005年,44卷,6989页)可作为多巴胺β-单加氧酶(DbetaM)和肽基甘氨酸α-羟基化单加氧酶(PHM)的潜在仿生模型。然而,与酶系统不同的是,这些配合物未能表现出C-H羟基化活性(Reynolds等人,《化学通讯》2005年,2014页)。对1:1 Cu-O(2)模型加合物及相关物种(Cu(III)-氢过氧化物、Cu(III)-氧代物和Cu(III)-氢氧化物)的量子化学表征表明,1:1 Cu-O(2)加合物对底物无反应性,这是因为氢原子提取时形成的O-H键较弱。这反过来又归因于1:1加合物具有较低的还原电位和碱性。另一方面,已确定Cu(III)-氧代物种在性质上介于Cu(III)-氧代物和Cu(II)-氧基之间,显示出对底物的反应性要高得多。基于这些结果,提出了新的DbetaM和PHM仿生配体的设计策略:应使新配体的电子富集程度降低,以便有利于1:1 Cu-O(2)加合物中双氧的端基配位。各种铜-氧配合物作为羟基化剂的相对反应性比较,为Cu(II)-超氧化物物种作为DbetaM和PHM中底物羟基化的中间体提供了支持,并表明Cu(III)-氧代中间体在这一过程中也可能起作用。

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