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在氧气存在的情况下,抗坏血酸氧化酶中的分子内电子转移会增强。

Intramolecular electron transfer in ascorbate oxidase is enhanced in the presence of oxygen.

作者信息

Farver O, Wherland S, Pecht I

机构信息

Department of Physical Chemistry, Royal Danish School of Pharmacy, Copenhagen.

出版信息

J Biol Chem. 1994 Sep 16;269(37):22933-6.

PMID:8083190
Abstract

Intramolecular electron transfer from the type 1 copper center to the type 3 copper(II) pair is induced in the multi-copper enzyme, ascorbate oxidase, following pulse radiolytic reduction of the type 1 Cu(II) ion. In the presence of a slight excess of dioxygen over ascorbate oxidase, interaction between the trinuclear copper center and O2 is observed even with singly reduced ascorbate oxidase molecules. Under these conditions, the rate constant for intramolecular electron transfer from type 1 Cu(I) to type 3 Cu(II) increases 5-fold to 1100 +/- 300 s-1 (20 degrees C, pH 5.8) as compared to that of the same process under anaerobic conditions. This observation constitutes evidence for control of the internal electron transfer process by one of its substrates. The structural and functional significance of these findings are discussed.

摘要

在多铜酶抗坏血酸氧化酶中,1型铜离子经脉冲辐解还原后,会诱导分子内电子从1型铜中心转移至3型铜(II)对。在抗坏血酸氧化酶存在少量过量氧气的情况下,即使是单还原的抗坏血酸氧化酶分子,也能观察到三核铜中心与O2之间的相互作用。在这些条件下,与厌氧条件下相同过程相比,从1型Cu(I)到3型Cu(II)的分子内电子转移速率常数增加了5倍,达到1100±300 s-1(20℃,pH 5.8)。这一观察结果构成了其一种底物控制内部电子转移过程的证据。讨论了这些发现的结构和功能意义。

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