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漆树漆酶的动力学研究。再氧化反应中多电子转移和氧中间体的证据。

Kinetic studies of Rhus vernicifera laccase. Evidence for multi-electron transfer and an oxygen intermediate in the reoxidation reaction.

作者信息

Andréasson L E, Brändén R, Reinhammar B

出版信息

Biochim Biophys Acta. 1976 Jul 8;438(2):370-9. doi: 10.1016/0005-2744(76)90254-0.

Abstract
  1. The reoxidation of reduced Rhus vernicifera laccase (monophenol,dihydroxyphenylalanine:oxygen oxidoreductase, EC 1.14.18.1) by molecular oxygen has been studied by optical absorption and EPR methods. 2. The reoxidation by oxygen of the type 1 Cu+ and the two-electron acceptor is characterized by a second-order rate constant of about 5-10(6) M-1-s-1. 3. The appearance of an optical intermediate (with an absorbance maximum around 360 nm) parallels the reoxidation of type 1 Cu+ and the two-electron acceptor. It disappears in a first-order reaction with a half-time of 20 s. A similar intermediate is formed during normal turnover. 4. The type 2 Cu+ appears to be reoxidized in an intramolecular reaction with a half-time of about 20 s, suggesting a correlation between the reoxidation of this site and the disappearance of the optical intermediate. 5. The results suggest that three electrons are rapidly transferred to oxygen leading to the formation of an enzyme-bound oxygen intermediate.
摘要
  1. 已通过光吸收和电子顺磁共振方法研究了还原态漆树漆酶(单酚、二羟基苯丙氨酸:氧氧化还原酶,EC 1.14.18.1)被分子氧再氧化的过程。2. 1型Cu⁺和双电子受体被氧再氧化的特征是二级速率常数约为5 - 10⁶ M⁻¹·s⁻¹。3. 一种光学中间体(最大吸收峰在360 nm左右)的出现与1型Cu⁺和双电子受体的再氧化平行。它在一级反应中消失,半衰期为20秒。在正常周转过程中会形成类似的中间体。4. 2型Cu⁺似乎在分子内反应中被再氧化,半衰期约为20秒,这表明该位点的再氧化与光学中间体的消失之间存在关联。5. 结果表明,三个电子迅速转移到氧上,导致形成一种酶结合的氧中间体。

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