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荚膜红细菌的细胞色素bc1复合物:二聚体Q循环中的泛醇氧化?

The cytochrome bc1 complex of Rhodobacter capsulatus: ubiquinol oxidation in a dimeric Q-cycle?

作者信息

Gopta O A, Feniouk B A, Junge W, Mulkidjanian A Y

机构信息

A.N. Belozersky Institute of Physico-Chemical Biology, Moscow University, Russia.

出版信息

FEBS Lett. 1998 Jul 17;431(2):291-6. doi: 10.1016/s0014-5793(98)00768-6.

Abstract

We studied the cytochrome bc1 complex (hereafter bc) by flash excitation of Rhodobacter capsulatis chromatophores. The reduction of the high-potential heme b(h), of cytochrome b (at 561 nm) and of cytochromes c (at 552 nm) and the electrochromic absorption transients (at 524 nm) were monitored after the first and second flashes of light, respectively. We kept the ubiquinone pool oxidized in the dark and concerned for the ubiquinol formation in the photosynthetic reaction center only after the second flash. Surprisingly, the first flash caused the oxidation of about one ubiquinol per bc dimer. Based on these and other data we propose a dimeric Q-cycle where the energetically unfavorable oxidation of the first ubiquinol molecule by one of the bc monomers is driven by the energetically favorable oxidation of the second ubiquinol by the other bc monomer resulting in a pairwise oxidation of ubiquinol molecules by the dimeric bc in the dark. The residual unpaired ubiquinol supposedly remains on the enzyme and is then oxidized after the first flash.

摘要

我们通过对荚膜红细菌菌绿体进行闪光激发来研究细胞色素bc1复合物(以下简称bc)。分别在第一次和第二次闪光后,监测高电位血红素b(h)、细胞色素b(在561nm处)、细胞色素c(在552nm处)的还原情况以及电致变色吸收瞬变(在524nm处)。我们在黑暗中使泛醌池保持氧化状态,并且仅在第二次闪光后关注光合反应中心中泛醇的形成。令人惊讶的是,第一次闪光导致每个bc二聚体氧化约一个泛醇。基于这些及其他数据,我们提出了一个二聚体Q循环,其中第一个泛醇分子被一个bc单体进行的能量上不利的氧化,由另一个bc单体对第二个泛醇进行的能量上有利的氧化所驱动,导致二聚体bc在黑暗中对泛醇分子进行成对氧化。残余的未配对泛醇据推测保留在酶上,然后在第一次闪光后被氧化。

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