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氧中间体与细胞色素氧化酶的混合价态:细胞色素氧化酶与氧的化合物A、B和C的红外吸收差光谱

Oxygen intermediates and mixed valence states of cytochrome oxidase: infrared absorption difference spectra of compounds A, B, and C of cytochrome oxidase and oxygen.

作者信息

Chance B, Leigh J S

出版信息

Proc Natl Acad Sci U S A. 1977 Nov;74(11):4777-80. doi: 10.1073/pnas.74.11.4777.

Abstract

A study of the near-infrared absorption spectra of three oxygen compounds of membrane-bound cytochrome oxidase (ferrocytochrome c:oxygen oxidoreductase; EC 1.9.3.1) shows that the formation of compound A (oxycytochrome oxidase) causes no significant infrared absorbance changes at -103 degrees. At -64 degrees, the formation of compound C from the mixed-valence state of the oxidase leads to increased absorption at 740-750 nm. The formation of compound B at -84 degrees from the fully reduced state of the oxidase causes increased absorption at 790-800 nm. Further oxidation of cytochrome oxidase results in increased infrared absorption at 820-830 nm at -60 degrees. The position of the infrared absorption band in compound C thus depends at least upon the oxidation-reduction state of heme a and its associated copper atom. Compound C contains two types of oxidized (cupric) copper; that associated with heme a is initially oxidized, and that associated with heme a3 is oxidized as a second step in the reaction with oxygen. Compound C exhibits a unique intense absorption band at 606-609 nm that is tentatively assigned to a charge transfer interaction between heme a3 in the reduced state and its associated copper in the oxidized state, with heme a and its associated copper in the oxidized state.

摘要

一项关于膜结合细胞色素氧化酶(亚铁细胞色素c:氧氧化还原酶;EC 1.9.3.1)的三种含氧化合物的近红外吸收光谱的研究表明,化合物A(氧合细胞色素氧化酶)的形成在-103℃时不会引起显著的红外吸光度变化。在-64℃时,氧化酶的混合价态形成化合物C会导致740 - 750nm处的吸收增加。在-84℃时,氧化酶的完全还原态形成化合物B会导致790 - 800nm处的吸收增加。细胞色素氧化酶的进一步氧化在-60℃时会导致820 - 830nm处的红外吸收增加。因此,化合物C中红外吸收带的位置至少取决于血红素a及其相关铜原子的氧化还原状态。化合物C含有两种类型的氧化态(铜离子)铜;与血红素a相关的铜最初被氧化,与血红素a3相关的铜在与氧反应的第二步被氧化。化合物C在606 - 609nm处呈现出独特的强吸收带,初步认为该吸收带归因于还原态的血红素a3与其氧化态相关铜之间的电荷转移相互作用,以及氧化态的血红素a及其相关铜之间的电荷转移相互作用。

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