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莱茵衣藻光系统I供体侧突变体中电子传递的限制。在一个缺乏捕光复合体组装的抑制菌株中,高光下致命的光氧化损伤得以克服。

Limitation in electron transfer in photosystem I donor side mutants of Chlamydomonas reinhardtii. Lethal photo-oxidative damage in high light is overcome in a suppressor strain deficient in the assembly of the light harvesting complex.

作者信息

Hippler M, Biehler K, Krieger-Liszkay A, van Dillewjin J, Rochaix J D

机构信息

Department of Molecular Biology, University of Geneva, 30 Quai Ernest Ansermet, CH-1211 Geneva, Switzerland.

出版信息

J Biol Chem. 2000 Feb 25;275(8):5852-9. doi: 10.1074/jbc.275.8.5852.

Abstract

Strains of Chlamydomonas reinhardtii lacking the PsaF gene or containing the mutation K23Q within the N-terminal part of PsaF are sensitive to high light (>400 microE m(-2) s(-1)) under aerobic conditions. In vitro experiments indicate that the sensitivity to high light of the isolated photosystem I (PSI) complex from wild type and from PsaF mutants is similar. In vivo measurements of photochemical quenching and oxygen evolution show that impairment of the donor side of PSI in the PsaF mutants leads to a diminished linear electron transfer and/or a decrease of photosystem II (PSII) activity in high light. Thermoluminescence measurements indicate that the PSII reaction center is directly affected under photo-oxidative stress when the rate of electron transfer becomes limiting in the PsaF-deficient strain and in the PsaF mutant K23Q. We have isolated a high light-resistant PsaF-deficient suppressor strain that has a high chlorophyll a/b ratio and is affected in the assembly of light-harvesting complex. These results indicate that under high light a functionally intact donor side of PSI is essential for protection of C. reinhardtii against photo-oxidative damage when the photosystems are properly connected to their light-harvesting antennae.

摘要

缺乏PsaF基因或在PsaF的N端部分含有K23Q突变的莱茵衣藻菌株在有氧条件下对高光(>400微爱因斯坦·米-2·秒-1)敏感。体外实验表明,野生型和PsaF突变体分离的光系统I(PSI)复合物对高光的敏感性相似。体内光化学猝灭和氧气释放的测量表明,PsaF突变体中PSI供体侧的损伤导致高光下线性电子传递减少和/或光系统II(PSII)活性降低。热发光测量表明,当电子传递速率在PsaF缺陷菌株和PsaF突变体K23Q中受到限制时,在光氧化应激下PSII反应中心会受到直接影响。我们分离出了一种耐高光的PsaF缺陷抑制菌株,其叶绿素a/b比值高,并且在捕光复合物的组装中受到影响。这些结果表明,在高光条件下,当光系统与其捕光天线正确连接时,功能完整的PSI供体侧对于保护莱茵衣藻免受光氧化损伤至关重要。

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