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AtFtsH6 is involved in the degradation of the light-harvesting complex II during high-light acclimation and senescence

机译:AtFtsH6参与强光驯化和衰老过程中光捕获复合物II的降解

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摘要

Degradation of the most abundant membrane protein on earth, the light-harvesting complex of Photosystem II (LHC II), is highly regulated under various environmental conditions, e.g., light stress, to prevent photochemical damage to the reaction center. We identified the LHC II degrading protease in Arabidopsis thaliana as a Zn2+-dependent metal loprotease, activated by the removal of unknown extrinsic factors, similar to the proteolytic activity directed against Lhcb3 in barley. By using a reversed genetic approach, the chloroplast-targeted protease ftsH6 was identified as being responsible for the degradation. T-DNA KO A. thaliana mutants, lacking ftsH6, were unable to degrade either Lhcb3 during dark-induced senescence or Lhcb1 and Lhcb3 during highlight acclimation. The A. thaliana ftsH6 gene has a clear orthologue in the genome of Populus trichocarpa. It is likely that FtsH6 is a general LHC 11 protease and that FtsH6-dependent LHC 11 proteolysis is a feature of all higher plants.
机译:Photosystem II(LHC II)的光捕获复合物是地球上最丰富的膜蛋白的降解,在各种环境条件下(例如光胁迫)受到严格控制,以防止光化学作用损害反应中心。我们确定拟南芥中的LHC II降解蛋白酶为Zn2 +依赖性金属蛋白酶,通过去除未知的外在因子激活,类似于针对大麦中Lhcb3的蛋白水解活性。通过使用反向遗传方法,叶绿体靶向蛋白酶ftsH6被确定是造成降解的原因。缺乏ftsH6的T-DNA KO拟南芥突变体无法在黑暗诱导的衰老过程中降解Lhcb3或在高光适应过程中降解Lhcb1和Lhcb3。拟南芥ftsH6基因在毛果杨的基因组中具有清晰的直向同源物。 FtsH6很可能是一种普通的LHC 11蛋白酶,而依赖FtsH6的LHC 11蛋白水解可能是所有高等植物的特征。

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