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多铜氧化酶漆酶的三核铜簇活性位点的光谱和电子结构研究:其配位不饱和的性质

Spectroscopic and electronic structure studies of the trinuclear Cu cluster active site of the multicopper oxidase laccase: nature of its coordination unsaturation.

作者信息

Quintanar Liliana, Yoon Jungjoo, Aznar Constantino P, Palmer Amy E, Andersson K Kristoffer, Britt R David, Solomon Edward I

机构信息

Department of Chemistry, Stanford University, Stanford, California 94305-5080, USA.

出版信息

J Am Chem Soc. 2005 Oct 12;127(40):13832-45. doi: 10.1021/ja0421405.

Abstract

Laccase is a multicopper oxidase that contains four Cu ions, one type 1 (T1), one type 2 (T2), and a coupled binuclear type 3 Cu pair (T3). The T2 and T3 centers form a trinuclear Cu cluster that is the active site for O2 reduction to H2O. A combination of spectroscopic and DFT studies on a derivative where the T1 Cu has been replaced by a spectroscopically innocent Hg2+ ion has led to a detailed geometric and electronic structure description of the resting trinuclear Cu cluster, complementing crystallographic results. The nature of the T2 Cu ligation has been elucidated; this site is three-coordinate with two histidines and a hydroxide over its functional pH range (stabilized by a large inductive effect, cluster charge, and a hydrogen-bonding network). Both the T2 and T3 Cu centers have open coordination positions oriented toward the center of the cluster. DFT calculations show that the negative protein pocket (four conserved Asp/Glu residues within 12 A) and the dielectric of the protein play important roles in the electrostatic stability and integrity of the highly charged, coordinatively unsaturated trinuclear cupric cluster. These tune the ligand binding properties of the cluster, leading to its high affinity for fluoride and its coordination unsaturation in aqueous media, which play a key role in its O2 reactivity.

摘要

漆酶是一种多铜氧化酶,含有四个铜离子,一个1型(T1)、一个2型(T2)和一对耦合的双核3型铜对(T3)。T2和T3中心形成一个三核铜簇,这是将O2还原为H2O的活性位点。对T1铜被光谱学上惰性的Hg2+离子取代的衍生物进行的光谱学和密度泛函理论(DFT)研究相结合,得出了静止三核铜簇的详细几何和电子结构描述,补充了晶体学结果。T2铜的配位性质已得到阐明;该位点在其功能pH范围内(通过大的诱导效应、簇电荷和氢键网络稳定)由两个组氨酸和一个氢氧化物三配位。T2和T3铜中心都有朝向簇中心的开放配位位置。DFT计算表明,负性蛋白口袋(12 Å内四个保守的天冬氨酸/谷氨酸残基)和蛋白的介电常数在高电荷、配位不饱和的三核铜簇的静电稳定性和完整性中起重要作用。这些因素调节了簇的配体结合特性,导致其对氟化物具有高亲和力以及在水介质中的配位不饱和性,这在其与O2的反应性中起关键作用。

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