首页> 美国卫生研究院文献>Plant and Cell Physiology >The Flavodiiron Protein Flv3 Functions as a Homo-Oligomer During Stress Acclimation and is Distinct from the Flv1/Flv3 Hetero-Oligomer Specific to the O2 Photoreduction Pathway
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The Flavodiiron Protein Flv3 Functions as a Homo-Oligomer During Stress Acclimation and is Distinct from the Flv1/Flv3 Hetero-Oligomer Specific to the O2 Photoreduction Pathway

机译:Flavodiiron蛋白Flv3在应力驯化过程中起均聚物的作用并且与特定于O2光还原途径的Flv1 / Flv3杂聚物不同。

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摘要

The flavodiiron proteins (FDPs) Flv1 and Flv3 in cyanobacteria function in photoreduction of O2 to H2O, without concomitant formation of reactive oxygen species, known as the Mehler-like reaction. Both Flv1 and Flv3 are essential for growth under fluctuating light (FL) intensities, providing protection for PSI. Here we compared the global transcript profiles of the wild type (WT), Δflv1 and Δflv1/Δflv3 grown under constant light (GL) and FL. In the WT, FL induced the largest down-regulation in transcripts involved in carbon-concentrating mechanisms (CCMs), while those of the nitrogen assimilation pathways increased as compared with GL. Already under GL the Δflv1/Δflv3 double mutant demonstrated a partial down-regulation of transcripts for CCM and nitrogen metabolism, while in FL conditions the transcripts for nitrogen assimilation were strongly down-regulated. Many alterations were specific only for Δflv1/Δflv3, and not detected in Δflv1, suggesting that certain transcripts are affected primarily because of the lack of flv3. By constructing the strains overproducing solely either Flv1 or Flv3, we demonstrate that the homo-oligomers of these proteins also function in acclimation of cells to FL, by catalyzing reactions with as yet unidentified components, while the presence of both Flv1 and Flv3 is a prerequisite for the Mehler-like reaction and thus the electron transfer to O2. Considering the low expression of flv1, it is unlikely that the Flv1 homo-oligomer is present in the WT.
机译:蓝细菌中的黄素二铁蛋白(FDPs)Flv1和Flv3在将O2光还原为H2O的过程中起作用,而没有同时形成活性氧,称为Mehler样反应。 Flv1和Flv3都是在波动光(FL)强度下生长所必需的,从而为PSI提供了保护。在这里,我们比较了野生型(WT),在恒定光照(GL)和FL下生长的Δflv1和Δflv1/Δflv3的全局转录谱图谱。在野生型中,FL诱导了碳浓缩机制(CCM)所涉转录本中最大的下调,而氮同化途径的转录下调与GL相比增加。在GL条件下,Δflv1/Δflv3双重突变体已显示出CCM和氮代谢的转录物部分下调,而在FL条件下,氮同化的转录物被强烈下调。许多改变仅对Δflv1/Δflv3具有特异性,而在Δflv1中未检测到,这表明某些转录本主要是由于缺少flv3而受到影响。通过构建仅过量生产Flv1或Flv3的菌株,我们证明了这些蛋白的同源寡聚体还可以通过催化与尚未鉴定的组分的反应来使细胞适应FL,而同时存在Flv1和Flv3是前提条件类似于Mehler反应,因此电子转移到O2。考虑到flv1的低表达,WT中不存在Flv1均聚物。

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