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新型二聚体光系统 II(PSII)-Psb27 蛋白复合物在 PSII 修复中的作用。

Role of novel dimeric Photosystem II (PSII)-Psb27 protein complex in PSII repair.

机构信息

Plant Biochemistry, Faculty of Biology and Biotechnology, Ruhr-Universität Bochum, Bochum, Germany.

出版信息

J Biol Chem. 2011 Aug 26;286(34):29548-55. doi: 10.1074/jbc.M111.238394. Epub 2011 Jul 7.

Abstract

The multisubunit membrane protein complex Photosystem II (PSII) catalyzes one of the key reactions in photosynthesis: the light-driven oxidation of water. Here, we focus on the role of the Psb27 assembly factor, which is involved in biogenesis and repair after light-induced damage of the complex. We show that Psb27 is essential for the survival of cyanobacterial cells grown under stress conditions. The combination of cold stress (30 °C) and high light stress (1000 μmol of photons × m(-2) × s(-1)) led to complete inhibition of growth in a Δpsb27 mutant strain of the thermophilic cyanobacterium Thermosynechococcus elongatus, whereas wild-type cells continued to grow. Moreover, Psb27-containing PSII complexes became the predominant PSII species in preparations from wild-type cells grown under cold stress. Two different PSII-Psb27 complexes were isolated and characterized in this study. The first complex represents the known monomeric PSII-Psb27 species, which is involved in the assembly of PSII. Additionally, a novel dimeric PSII-Psb27 complex could be allocated in the repair cycle, i.e. in processes after inactivation of PSII, by (15)N pulse-label experiments followed by mass spectrometry analysis. Comparison with the corresponding PSII species from Δpsb27 mutant cells showed that Psb27 prevented the release of manganese from the previously inactivated complex. These results indicate a more complex role of the Psb27 protein within the life cycle of PSII, especially under stress conditions.

摘要

多亚基膜蛋白复合物光系统 II(PSII)催化光合作用中的关键反应之一:水的光驱动氧化。在这里,我们关注的是 Psb27 组装因子的作用,该因子参与复合物光诱导损伤后的生物发生和修复。我们表明,Psb27 对于在应激条件下生长的蓝细菌细胞的存活是必不可少的。冷应激(30°C)和高光应激(1000 μmol 光子×m(-2)×s(-1))的组合导致嗜热蓝细菌 Thermosynechococcus elongatus 的Δpsb27 突变株完全停止生长,而野生型细胞继续生长。此外,在冷应激下生长的野生型细胞的 PSII 复合物中含有 Psb27,成为主要的 PSII 物种。本研究中分离并表征了两种不同的 PSII-Psb27 复合物。第一个复合物代表已知的单体 PSII-Psb27 物种,它参与 PSII 的组装。此外,通过(15)N 脉冲标记实验和质谱分析,可以将一种新的二聚 PSII-Psb27 复合物分配到修复循环中,即在 PSII 失活后的过程中。与来自Δpsb27 突变细胞的相应 PSII 物种的比较表明,Psb27 防止锰从前已失活的复合物中释放。这些结果表明 Psb27 蛋白在 PSII 的生命周期中具有更复杂的作用,特别是在应激条件下。

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