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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Quality control of Photosystem II:an FtsH protease plays an essential role in the turnover of the reaction center Dl protein in Synechocystis PCC 6803 under heat stress as well as light stress conditions
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Quality control of Photosystem II:an FtsH protease plays an essential role in the turnover of the reaction center Dl protein in Synechocystis PCC 6803 under heat stress as well as light stress conditions

机译:光系统II的质量控制:FtsH蛋白酶在热胁迫和光胁迫条件下在拟南芥PCC 6803中反应中心D1蛋白的转换中起着至关重要的作用

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摘要

The role of an AAA protease FtsH (slr0228) in the turnover of the Dl protein was studied under moderate heat stress conditions using wild-type cells of the cyanobacterium Synechocystis PCC 6803 and the mutant cells lacking a ho-mologue of FtsH (slr0228).When the growth temperature of the wild-type was shifted from 30 deg C to 40 deg C,growth and oxygen-evolving activity were partially inhibited.Under the same heat stress,growth of the mutant was inhibited more significantly (63% inhibition after 5 days heat stress,compared with 26% inhibition with the wild-type cells) and the oxygen-evolving activity was also impaired in parallel.With heat stress at 42 deg C,the level of the Dl protein of wild type cells was decreased,whereas that in mutant cells was not.The responses of cyanobacterial cells to heat stress observed here are quite similar to those to light stress that were reported previously [P.Silva,E.Thompson,S.Bailey,O.Kruse,C.W.Mullineaux,C.Robinson,N.H.Mann and P.J.Nixon,Plant Cell,2003,15,2152-2164,ref.24].From these results,we suggest that the FtsH protease (slr0228) is responsible for both the heat-induced and light-induced degradation of the Dl protein.Notably,the amount of FtsH increased when the wild-type cells were exposed to heat stress or light stress,indicating that the up-regulation of the FtsH protease in the thylakoids is crucial for the cyanobacterial cells to cope with these abiotic stresses.
机译:使用蓝藻集胞藻PCC 6803的野生型细胞和缺乏FtsH的同源性的突变细胞(slr0228),在中等热应激条件下研究了AAA蛋白酶FtsH(slr0228)在D1蛋白周转中的作用。当野生型的生长温度从30摄氏度转变为40摄氏度时,生长和放氧活性受到了部分抑制。在相同的热胁迫下,突变体的生长受到了更显着的抑制(5次后抑制率为63%)。天热应激,与野生型细胞抑制26%相比,同时也削弱了放氧活性。在42℃的热应激下,野生型细胞的Dl蛋白水平降低,而此处观察到的蓝细菌细胞对热胁迫的反应与先前报道的对光胁迫的反应非常相似[P.Silva,E.Thompson,S.Bailey,O.Kruse,CWMullineaux,C罗宾逊,NHMann和PJNixon,Plant Cel [2003,15,2152-2164,ref.24]。根据这些结果,我们认为FtsH蛋白酶(slr0228)既是热诱导的降解又是光诱导的D1蛋白降解。当野生型细胞暴露于热胁迫或光胁迫下时,FtsH的表达增加,这表明类囊体中FtsH蛋白酶的上调对于蓝细菌细胞应对这些非生物胁迫至关重要。

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