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首页> 外文期刊>Plant physiology >Oxidation of Translation Factor EF-Tu Inhibits the Repair of Photosystem II
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Oxidation of Translation Factor EF-Tu Inhibits the Repair of Photosystem II

机译:翻译因子EF-TU的氧化抑制了照片系统II的修复

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摘要

The repair of photosystem II (PSII) is particularly sensitive to oxidative stress and the inhibition of repair is associated with oxidative damage to the translational elongation system in the cyanobacterium Synechocystis sp. PCC 6803. However, the molecular mechanisms underlying this inhibition are unknown. We previously demonstrated in vitro that EF-Tu, a translation factor that delivers aminoacyl-tRNA to the ribosome, is inactivated by reactive oxygen species via oxidation of the Cys residue Cys-82. In this study, we examined the physiological role of the oxidation of EF-Tu in Synechocystis. Under strong light, EF-Tu was rapidly oxidized to yield oxidized monomers in vivo. We generated a Synechocystis transformant that expressed mutated EF-Tu in which Cys-82 had been replaced with a Ser residue. Under strong light, the de novo synthesis of proteins that are required for PSII repair, such as D1, was enhanced in the transformant and photoinhibition of PSII was alleviated. However, photodamage to PSII, measured in the presence of lincomycin, was similar between the transformant and wild-type cells, suggesting that expression of mutated EF-Tu might enhance the repair of PSII. Alleviating photoinhibition through mutation of EF-Tu did not alter cell growth under strong light, perhaps due to the enhanced production of reactive oxygen species. These observations suggest that the oxidation of EF-Tu under strong light inhibits PSII repair, resulting in the stimulation of photoinhibition.
机译:照相系统II(PSII)的修复对氧化应激特别敏感,并且修复的抑制与蓝藻综合症SP中的转化伸长系统的氧化损伤有关。然而,这种抑制的分子机制是未知的。我们之前在体外证明了EF-Tu,将氨基酰-CrNA与核糖体提供的平移因子通过反应性氧物种通过Cys残基Cys-82的氧化而灭活。在这项研究中,我们研究了EF-TU在SyneChocystis中的氧化的生理作用。在强光下,EF-Tu被迅速氧化以在体内产生氧化单体。我们产生了表达突变的EF-TU的同步型转化体,其中Cys-82已被Ser残留物代替。在强光下,在转化体中增强了PSII修复所需的蛋白质(例如D1)所需的蛋白质的DE Novo合成,并减轻了Psii的光抑制。然而,在林霉素存在下测量的光电图为林霉素,在转化体和野生型细胞之间类似,表明突变的EF-TU的表达可能会增强PSII的修复。缓解通过EF-TU的突变的光抑制在强光下没有改变细胞生长,也许是由于增强了活性氧物种的生产。这些观察结果表明,强光下EF-TU的氧化抑制了PSII修复,导致刺激光抑制。

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  • 来源
    《Plant physiology 》 |2018年第4期| 共9页
  • 作者单位

    Saitama Univ Grad Sch Sci &

    Engn Dept Biochem &

    Mol Biol Sakura Ku 255 Shimo Okubo Saitama 3388570 Japan;

    Saitama Univ Grad Sch Sci &

    Engn Dept Biochem &

    Mol Biol Sakura Ku 255 Shimo Okubo Saitama 3388570 Japan;

    Saitama Univ Grad Sch Sci &

    Engn Dept Biochem &

    Mol Biol Sakura Ku 255 Shimo Okubo Saitama 3388570 Japan;

    Tokyo Inst Technol Lab Chem &

    Life Sci 4259 Nagatsuta Yokohama Kanagawa 2268503 Japan;

    Saitama Univ Grad Sch Sci &

    Engn Dept Biochem &

    Mol Biol Sakura Ku 255 Shimo Okubo Saitama 3388570 Japan;

    Saitama Univ Grad Sch Sci &

    Engn Dept Biochem &

    Mol Biol Sakura Ku 255 Shimo Okubo Saitama 3388570 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物生理学 ;
  • 关键词

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