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铜(I)位点上分子氧活化的同位素探测

Isotopic probing of molecular oxygen activation at copper(I) sites.

作者信息

Lanci Michael P, Smirnov Valeriy V, Cramer Christopher J, Gauchenova Ekaterina V, Sundermeyer Jörg, Roth Justine P

机构信息

Department of Chemistry, Johns Hopkins University, 3400 North Charles Street, Baltimore, Maryland 21218, USA.

出版信息

J Am Chem Soc. 2007 Nov 28;129(47):14697-709. doi: 10.1021/ja074620c. Epub 2007 Oct 26.

Abstract

Copper-dioxygen (CuO2) adducts are frequently proposed as intermediates in enzymes, yet their electronic and vibrational structures have not always been understood. [Cu(eta1-O2)TMG3tren]+ (TMG3tren = 1,1,1-tris{2-[N2-(1,1,3,3-tetramethylguanidino)]ethyl}amine) features end-on (eta1) O2 coordination in the solid state. Described here is an investigation of the compound's solution properties by nuclear magnetic resonance spectroscopy, density functional calculations, and oxygen isotope effects. The study yields two major findings. First, [Cu(eta1-O2)TMG3tren]+ is paramagnetic due to a triplet electronic structure; this is in contrast to other copper compounds where O2 is bound in a side-on manner. Second, the oxygen equilibrium isotope effect upon O2 binding to copper(I) (18O EIE [triple bond] K(16O16O)/K(16O18O) = 1.0148 +/- 0.0012) is significantly larger than those determined for iron and cobalt eta1-O2 adducts. This result is suggested to reflect greater ionic (CuII-O2-I) character within the valence bond description. A revised interpretation of the physical origins of the 18O EIEs upon O2 binding to redox metals is also advanced along with experimental data that should be used as benchmarks for interpreting 18O kinetic isotope effects upon enzyme reactions.

摘要

铜-双氧(CuO₂)加合物常被认为是酶中的中间体,但其电子和振动结构尚未完全明晰。[Cu(η¹-O₂)TMG₃tren]⁺(TMG₃tren = 1,1,1-三{2-[N₂-(1,1,3,3-四甲基胍基)]乙基}胺)在固态时具有端基(η¹)O₂配位。本文通过核磁共振光谱、密度泛函计算和氧同位素效应研究了该化合物的溶液性质。该研究有两个主要发现。其一,[Cu(η¹-O₂)TMG₃tren]⁺因三重态电子结构而具有顺磁性;这与其他O₂以侧基方式结合的铜化合物不同。其二,O₂与铜(I)结合时的氧平衡同位素效应(¹⁸O EIE [三键] K(¹⁶O¹⁶O)/K(¹⁶O¹⁸O) = 1.0148 ± 0.0012)显著大于铁和钴的η¹-O₂加合物所测定的值。该结果表明在价键描述中具有更大的离子(CuII-O₂-I)特征。同时还提出了对O₂与氧化还原金属结合时¹⁸O EIEs物理起源的修正解释以及应作为解释酶反应中¹⁸O动力学同位素效应基准的实验数据。

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