首页> 美国卫生研究院文献>Biochemical Journal >Compound C2 a product of the reaction of oxygen and the mixed-valence state of cytochrome oxidase. Optical evidence for a type-I copper.
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Compound C2 a product of the reaction of oxygen and the mixed-valence state of cytochrome oxidase. Optical evidence for a type-I copper.

机译:化合物C2是氧气与细胞色素氧化酶混合价态反应的产物。 I型铜的光学证据。

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摘要

Compound C2 is a product of the reaction of O2 and the mixed-valence state of cytochrome oxidase. The mixed-valence state of membrane-bound cytochrome oxidase is obtained at -24 degrees C, by using either ferricyanide or yeast peroxidase complex ES as oxidants, and the configurations of oxidized haem a and its associated copper (a3+Cua2+) and of reduced haem a3 and its associated copper (ac3+.CO.Cua3+) are obtained. The mixed-valence-state cytochrome oxidase mixed with O2 at -24 degrees C and flash-photolysed at -60 to -100 degrees C reacts with O2 and initially forms an oxy compound (A2) similar to that formed from the fully reduced state (A1). Thereafter the course of the reaction differs from that obtained in the fully reduced state, and absorbance increases are observed at 740--750 nm and 609 nm and a decrease at 444 nm, with no increase in absorbance at 655 nm. One possible attribution of the absorbance increases is to charge-transfer interaction between the iron of haem a3 and the copper associated with haem a3, Cua3(2+), having properties of a type-I 'blue' copper. A possible attribution of the decrease in absorbance at 444 nm is to liganding of a3(2+). A related explanation is that the 609 nm absorbance involves a charge-transfer interaction of both iron and copper as a mixed-valence binuclear complex, Cua3, having properties of a non-blue copper. Intermediates in addition to Compound C2 are not yet identifiable by chemical or spectroscopic tests. The kinetic and equilibrium properties of Compound C2 are described.
机译:化合物C2是O2的反应和细胞色素氧化酶的混合价态的产物。通过使用铁氰化物或酵母过氧化物酶复合物ES作为氧化剂,氧化血红素a及其相关铜(a3 + Cua2 +)的构型和还原态,在-24摄氏度下获得膜结合细胞色素氧化酶的混合价态。获得了血红素a3及其相关的铜(ac3 + .CO.Cua3 +)。在-24摄氏度下与O2混合并在-60至-100摄氏度下进行快速光解的混合价态细胞色素氧化酶与O2反应并最初形成类似于完全还原态形成的含氧化合物(A2)( A1)。此后,反应过程与完全还原状态下的过程不同,在740--750 nm和609 nm处观察到吸光度增加,在444 nm处观察到吸光度降低,而在655 nm处吸光度没有增加。吸光度增加的一种可能归因于血红素a3的铁和与血红素a3相关的铜Cua3(2+)之间的电荷转移相互作用,其性质为I型“蓝”铜。 444 nm处吸光度降低的可能归因于a3(2+)的配位。一个相关的解释是,609 nm吸光度涉及铁和铜的电荷转移相互作用,这是一种具有非蓝铜特性的混合价双核配合物Cua3。除化合物C2以外的中间体尚无法通过化学或光谱测试鉴定。描述了化合物C2的动力学和平衡性质。

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