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漆树漆酶的一种新型混合价态形式及其与双氧反应生成与三核中心结合的过氧化物中间体。

A novel mixed valence form of Rhus vernicifera laccase and its reaction with dioxygen to give a peroxide intermediate bound to the trinuclear center.

作者信息

Zoppellaro G, Sakurai T, Huang H

机构信息

Department of Chemistry, Faculty of Science, Kanazawa University, Kakuma, Kanazawa 920-1192, Japan.

出版信息

J Biochem. 2001 Jun;129(6):949-53. doi: 10.1093/oxfordjournals.jbchem.a002942.

Abstract

Rhus vernicifera laccase, in a novel mixed valence state [T1oxT23red: type 1 Cu as Cu(II), and type 2 and 3 Cus as Cu(I)], was formed by reacting Cu(I) on the type 2 Cu-depleted laccase [T1oxT3red: type 1 Cu as Cu(II) and type 3 Cus as Cu(I)] under argon. Contrary to T1oxT3red, T1oxT23red was highly reactive with dioxygen, and gave the three transient bands at 340, 475, and 680 nm due to the two-electron reduced form of dioxygen [charge transfer bands from peroxide to Cu(II)]. The first order decays were highly dependent on pH, which led to the successful detection of the intermediate for ca. 2 h at pH 7.5. Another mixed valence derivative, T12oxT3red [type 1 and type 2 Cus as Cu(II), and type 3 Cus as Cu(I)] prepared through the action of Cu(II) on T1oxT3red was not reactive with dioxygen, but showed high enzyme activity as to the oxidation of N,N-dimethyl-p-phenylenediamine. The whole reaction mechanism of the reduction of dioxygen by laccase was proposed based on the present results together with data for the former detection and characterization of the three-electron reduced form of dioxygen [Huang, H. et al. (1999) J. Biol. Chem. 274, 46, 32718-32724].

摘要

漆树漆酶在氩气氛围下,通过在2型铜缺失的漆酶[T1oxT3red:1型铜为Cu(II),3型铜为Cu(I)]上反应Cu(I),形成了一种新型混合价态[T1oxT23red:1型铜为Cu(II),2型和3型铜为Cu(I)]。与T1oxT3red不同,T1oxT23red与双氧具有高反应活性,并且由于双氧的双电子还原形式[从过氧化物到Cu(II)的电荷转移带],在340、475和680nm处产生三个瞬态吸收带。一级衰减高度依赖于pH值,这使得在pH7.5时成功检测到中间体约2小时。通过在T1oxT3red上作用Cu(II)制备的另一种混合价衍生物T12oxT3red[1型和2型铜为Cu(II),3型铜为Cu(I)]与双氧不发生反应,但对N,N-二甲基对苯二胺的氧化显示出高酶活性。基于目前的结果以及之前对双氧三电子还原形式的检测和表征数据[Huang,H.等人(1999年)《生物化学杂志》274,46,32718 - 32724],提出了漆酶还原双氧的整个反应机制。

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