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光系统II-H亚基在光保护中的作用:集胞藻6803中D1周转的新方面

Role of the PSII-H subunit in photoprotection: novel aspects of D1 turnover in Synechocystis 6803.

作者信息

Bergantino Elisabetta, Brunetta Alessia, Touloupakis Eleftherios, Segalla Anna, Szabò Ildikò, Giacometti Giorgio Mario

机构信息

Department of Biology, University of Padua, Viale G. Colombo 3, 35121 Padua, Italy.

出版信息

J Biol Chem. 2003 Oct 24;278(43):41820-9. doi: 10.1074/jbc.M303096200. Epub 2003 Aug 9.

Abstract

Photosystem I-less Synechocystis 6803 mutants carrying modified PsbH proteins, derived from different combinations of wild-type cyanobacterial and maize genes, were constructed. The mutants were analyzed in order to determine the relative importance of the intra- and extramembrane domains of the PsbH subunit in the functioning of photosystem (PS) II, by a combination of biochemical, biophysical, and physiological approaches. The results confirmed and extended previously published data showing that, besides D1, the whole PsbH protein is necessary to determine the correct structure of a QB/herbicide-binding site. The different turnover of the D1 protein and chlorophyll photobleaching displayed by mutant cells in response to photoinhibitory treatment revealed for the first time the actual role of the PsbH subunit in photoprotection. A functional PsbH protein is necessary for (i) rapid degradation of photodamaged D1 molecules, which is essential to avoid further oxidative damage to the PSII core, and (ii) insertion of newly synthesized D1 molecules into the thylakoid membrane. PsbH is thus required for both initiation and completion of the repair cycle of the PSII complex in cyanobacteria.

摘要

构建了携带源自野生型蓝藻和玉米基因不同组合的修饰型PsbH蛋白的光系统I缺失的集胞藻6803突变体。通过生化、生物物理和生理学方法相结合,对这些突变体进行分析,以确定PsbH亚基的膜内和膜外结构域在光系统(PS)II功能中的相对重要性。结果证实并扩展了先前发表的数据,表明除了D1之外,整个PsbH蛋白对于确定QB/除草剂结合位点的正确结构是必需的。突变细胞在光抑制处理下表现出的D1蛋白不同周转率和叶绿素光漂白首次揭示了PsbH亚基在光保护中的实际作用。功能性PsbH蛋白对于(i)光损伤的D1分子的快速降解是必需的,这对于避免对PSII核心的进一步氧化损伤至关重要,以及(ii)将新合成的D1分子插入类囊体膜中也是必需的。因此,PsbH对于蓝藻中PSII复合物修复循环的启动和完成都是必需的。

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