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蓝色氧化酶中铜发色团的光还原作用。

Photoreduction of copper chromophores in blue oxidases.

作者信息

Henry Y, Peisach J

出版信息

J Biol Chem. 1978 Nov 10;253(21):7751-6.

PMID:212433
Abstract

The low temperature (77 K) irradiation of oxidized ceruloplasmin and Rhus vernicifera laccase at the 330 nm absorption which arises from type 3 copper leads to the reduction of type 1 copper as demonstrated by bleaching of the 610 nm chromophore and the decrease of the EPR signal associated with this species. Type 2 copper remains unaffected. Concomitant with the type 1 copper reduction, a new EPR signal which is possibly that of a biradical appears. Upon thawing, type 1 copper is reversibly oxidized and the radical signal disappears. Irradiation of oxidized protein at the absorption band of type 1 copper produces no spectral change. An EPR study at room temperature confirms the wave-length specificity and reversibility of the photoreduction of type 1 copper and radical formation. Radical appearance and disappearance at room temperature are extremely slow (tau1/2 approximately 30 min). Optical studies at room temperature show that upon anaerobic irradiation of laccase in the 330 nm absorption band, both type 3 and type 1 chromophores are slowly reduced. Upon return to the dark and in the presence of O2, both type 3 and type 1 centers are reoxidized. Oxidizing equivalents either from O2 or K3Fe(CN)6 are required for the reoxidation reaction. These studies demonstrate that there is a direct energy transfer between type 3 and type 1 copper sites in blue copper oxidases.

摘要

对氧化型血浆铜蓝蛋白和漆树漆酶在330 nm吸收峰(由3型铜产生)处进行低温(77 K)辐照,导致1型铜还原,这可通过610 nm发色团的漂白以及与该物种相关的电子顺磁共振(EPR)信号的降低来证明。2型铜不受影响。伴随着1型铜的还原,出现了一个新的EPR信号,可能是双自由基的信号。解冻后,1型铜可逆地氧化,自由基信号消失。在1型铜的吸收带对氧化型蛋白质进行辐照不会产生光谱变化。室温下的EPR研究证实了1型铜光还原和自由基形成的波长特异性和可逆性。室温下自由基的出现和消失极其缓慢(半衰期约为30分钟)。室温下的光学研究表明,在330 nm吸收带对漆酶进行厌氧辐照时,3型和1型发色团都会缓慢还原。回到黑暗中并在有O2存在的情况下,3型和1型中心都会重新氧化。再氧化反应需要来自O2或K3Fe(CN)6的氧化当量。这些研究表明,在蓝色铜氧化酶中,3型和1型铜位点之间存在直接的能量转移。

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