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首页> 外文期刊>Plant Molecular Biology >EXPRESSION OF THE PSBA GENE DURING PHOTOINHIBITION AND RECOVERY IN SYNECHOCYSTIS PCC 6714 - INHIBITION AND DAMAGE OF TRANSCRIPTIONAL AND TRANSLATIONAL MACHINERY PREVENT THE RESTORATION OF PHOTOSYSTEM II ACTIVITY
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EXPRESSION OF THE PSBA GENE DURING PHOTOINHIBITION AND RECOVERY IN SYNECHOCYSTIS PCC 6714 - INHIBITION AND DAMAGE OF TRANSCRIPTIONAL AND TRANSLATIONAL MACHINERY PREVENT THE RESTORATION OF PHOTOSYSTEM II ACTIVITY

机译:PSBA基因在光合作用PCC 6714的光抑制和恢复过程中的表达-转录和翻译机械的抑制和损害阻止了光系统II活性的恢复

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摘要

The D1 reaction center protein of the photosystem II complex is very sensitive to light. It is continuously being damaged, degraded and resynthesized. Under high light, photosystem II inactivation is observed. This is because the rate of D1 damage is faster than that of its replacement. This process can be reversed if exposure to high light is not too long. In this work we study the changes that occur in the transcriptional and translational machinery that could lead to irreversible photoinhibition in Synechocystis PCC 6714. In the first minutes of photoinhibition, high light induced an accumulation of psbA mRNA due to an increase in psbA transcription initiation. Although the transcription rate of other photosynthetic genes (e.g. psaE and cpcB-cpcA) declined, the high turnover of the psbA transcript was maintained for a long time. When the light stress was too long, the stability of psbA mRNA increased and the psbA transcription rate appeared to decrease. A high level of psbA mRNA was maintained even though translation no longer occurred and the cells were unable to recover. Experiments to measure newly synthesized D1 incorporation into the thylakoid membranes during recovery in the presence of rifampicin showed that the initiation of transcription was not required for translation of psbA mRNA when photoinhibition was still reversible. Since psbA translation did not depend on the level of psbA transcript or on the initiation of psbA transcription, we propose that damage to the translational machinery also occurred during light stress, leading to the inhibition of D1 synthesis and to irreversible photoinhibition. [References: 43]
机译:光系统II复合物的D1反应中心蛋白对光非常敏感。它不断地被破坏,退化和重新合成。在强光下,观察到光系统II失活。这是因为D1损坏的速度比其替换速度要快。如果暴露在高光下的时间不太长,则可以反向进行此过程。在这项工作中,我们研究了转录和翻译机制中发生的变化,这些变化可能导致集胞藻PCC 6714发生不可逆的光抑制。在光抑制的最初几分钟,由于psbA转录起始量的增加,强光诱导了psbA mRNA的积累。尽管其他光合作用基因(例如psaE和cpcB-cpcA)的转录速率下降,但psbA转录本的高周转率可维持很长时间。当光照过长时,psbA mRNA的稳定性增加,并且psbA转录速率似乎降低。即使不再发生翻译并且细胞无法恢复,也可以维持高水平的psbA mRNA。测量在利福平存在下恢复过程中新合成的D1掺入类囊体膜的实验表明,当光抑制仍然可逆时,psbA mRNA的翻译不需要转录起始。由于psbA翻译不依赖于psbA转录物的水平或依赖于psbA转录的起始,因此我们建议在光胁迫下也发生翻译机制的破坏,从而导致D1合成的抑制和不可逆的光抑制。 [参考:43]

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