Zoppellaro G, Sakurai T, Huang H
Department of Chemistry, Faculty of Science, Kanazawa University, Kakuma, Kanazawa 920-1192, Japan.
J Biochem. 2001 Jun;129(6):949-53. doi: 10.1093/oxfordjournals.jbchem.a002942.
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].
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。