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叶绿体包膜膜中的氧化还原链:包括铁硫中心在内的电子载体存在的光谱证据。

Redox chains in chloroplast envelope membranes: spectroscopic evidence for the presence of electron carriers, including iron-sulfur centers.

作者信息

Jäger-Vottero P, Dorne A J, Jordanov J, Douce R, Joyard J

机构信息

Département de Biologie Moléculaire et Structurale, Unité de Recherche Associée Centre National de la Recherche Scientifique n degrees 576, Université Joseph Fourier et Commissariat à l'Energie Atomique-Grenoble, F-38054, Grenoble cédex 9, France.

出版信息

Proc Natl Acad Sci U S A. 1997 Feb 18;94(4):1597-602. doi: 10.1073/pnas.94.4.1597.

Abstract

We have shown that envelope membranes from spinach chloroplasts contain (i) semiquinone and flavosemiquinone radicals, (ii) a series of iron-containing electron-transfer centers, and (iii) flavins (mostly FAD) loosely associated with proteins. In contrast, we were unable to detect any cytochrome in spinach chloroplast envelope membranes. In addition to a high spin [1Fe]3+ type protein associated with an EPR signal at g = 4.3, we observed two iron-sulfur centers, a [4Fe-4S]1+ and a [2Fe-2S]1+, associated with features, respectively, at g = 1.921 and g = 1.935, which were detected after reduction by NADPH and NADH, respectively. The [4Fe-4S] center, but not the [2Fe-2S] center, was also reduced by dithionite or 5-deazaflavin/oxalate. An unusual Fe-S center, named X, associated with a signal at g = 2.057, was also detected, which was reduced by dithionite but not by NADH or NADPH. Extremely fast spin-relaxation rates of flavin- and quinone-free radicals suggest their close proximity to the [4Fe-4S] cluster or the high-spin [1Fe]3+ center. Envelope membranes probably contain enzymatic activities involved in the formation and reduction of semiquinone radicals (quinol oxidase, NADPH-quinone, and NADPH-semiquinone reductases). The physiological significance of our results is discussed with respect to (i) the presence of desaturase activities in envelope membranes and (ii) the mechanisms involved in the export of protons to the cytosol, which partially regulate the stromal pH during photosynthesis. The characterization of such a wide variety of electron carriers in envelope membranes opens new fields of research on the functions of this membrane system within the plant cell.

摘要

我们已经证明,菠菜叶绿体的包膜膜含有:(i)半醌和黄素半醌自由基;(ii)一系列含铁的电子传递中心;(iii)与蛋白质松散结合的黄素(主要是FAD)。相比之下,我们在菠菜叶绿体包膜膜中未能检测到任何细胞色素。除了一种与g = 4.3处的电子顺磁共振(EPR)信号相关的高自旋[1Fe]3+型蛋白质外,我们还观察到两个铁硫中心,一个[4Fe-4S]1+和一个[2Fe-2S]1+,分别与g = 1.921和g = 1.935处的特征相关,它们分别在被NADPH和NADH还原后被检测到。[4Fe-4S]中心可被连二亚硫酸盐或5-脱氮黄素/草酸盐还原,但[2Fe-2S]中心不能。还检测到一个异常的铁硫中心,命名为X,与g = 2.057处的信号相关,它可被连二亚硫酸盐还原,但不能被NADH或NADPH还原。黄素和醌自由基极快的自旋弛豫速率表明它们与[4Fe-4S]簇或高自旋[1Fe]3+中心紧密相邻。包膜膜可能含有参与半醌自由基形成和还原的酶活性(醌醇氧化酶、NADPH-醌和NADPH-半醌还原酶)。我们从以下两方面讨论了结果的生理学意义:(i)包膜膜中去饱和酶活性的存在;(ii)质子向细胞质输出的机制,这在光合作用期间部分调节了基质pH。包膜膜中如此多种电子载体的表征为研究该膜系统在植物细胞内的功能开辟了新的研究领域。

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