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单标记硫脲基芘三磺酸盐细胞色素c衍生物中的光致电子转移

Photoinduced electron transfer in singly labeled thiouredopyrenetrisulfonate cytochrome c derivatives.

作者信息

Kotlyar A B, Borovok N, Hazani M

机构信息

Department of Biochemistry, George S. Wise Faculty of Life Sciences, Tel Aviv University, Ramat Aviv 69978, Israel.

出版信息

Biochemistry. 1997 Dec 16;36(50):15828-33. doi: 10.1021/bi9711801.

Abstract

A novel method for initiation of intramolecular electron transfer reactions in cytochrome c is reported. The method is based on photoexcitation of covalently attached thiouredopyrenetrisulfonate (TUPS) by the third harmonic frequency of a Nd:YAG laser (355 nm), the reaction that generates the low-potential triplet state of the dye with high quantum efficiency. TUPS derivatives of horse heart cytochrome c singly labeled at specific lysine residues were prepared and purified to homogeneity by ion-exchange high-pressure liquid chromatography. Eight derivatives were characterized by determination of the location of the modification, reduction potentials, and measurement of enzymatic activity with cytochrome oxidase. Transient absorption spectroscopy was used to directly measure the rate constants for the electron transfer reaction from the photoexcited triplet state of TUPS to the oxidized heme group and the back reaction from the ferrous heme to the oxidized dye. For all singly labeled derivatives, the rate constants for heme reduction were 1 or 2 orders of magnitude larger than for its reoxidation, consistent with the greater thermodynamic driving force for the oxidation reaction. Analysis of the variation of electron-transfer rates with the distance separating the dye and the heme reveals a value of coupling decay constant (beta) of 0.46 A-1. Rapid and effective photoreduction of cytochrome c makes it a useful tool for fast initiation of electron transfer in the reductive direction within complexes of cytochrome c with other redox proteins.

摘要

报道了一种引发细胞色素c分子内电子转移反应的新方法。该方法基于用Nd:YAG激光的三倍频(355nm)对共价连接的硫脲基芘三磺酸盐(TUPS)进行光激发,此反应能以高量子效率产生染料的低电位三重态。制备了在特定赖氨酸残基处单标记的马心细胞色素c的TUPS衍生物,并通过离子交换高压液相色谱法纯化至同质。通过确定修饰位置、还原电位以及用细胞色素氧化酶测量酶活性对8种衍生物进行了表征。利用瞬态吸收光谱法直接测量了从TUPS的光激发三重态到氧化血红素基团的电子转移反应速率常数以及从亚铁血红素到氧化染料的逆向反应速率常数。对于所有单标记衍生物,血红素还原的速率常数比其再氧化的速率常数大1或2个数量级,这与氧化反应更大的热力学驱动力一致。对电子转移速率随染料与血红素之间距离变化的分析揭示了耦合衰减常数(β)的值为0.46 Å⁻¹。细胞色素c的快速有效光还原使其成为在细胞色素c与其他氧化还原蛋白的复合物中快速引发还原方向电子转移的有用工具。

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