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Regulation of aerobic photosystem synthesis in the purple bacterium Rhodospirillum centenum by CrtJ and AerR

机译:CrtJ和AerR对紫色百年红螺菌中有氧光系统合成的调控。

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摘要

Genes coding for putative CrtJ and AerR homologs were identified and characterized in the purple photosynthetic bacterium Rhodospirillum centenum (also known as Rhodocista centenaria), an organism that synthesizes photopigments even under highly aerated conditions. Mutational analysis indicated that in Rsp. centenum, gene crtJ codes for a repressor for photosynthesis gene expression as in Rhodobacter capsulatus, which exhibits a high level of oxygen repression of photosystem synthesis. In contrast to Rba. capsulatus, AerR in Rsp. centenum appears to be an aerobic activator; an aerR mutation resulted in significantly reduced levels of photopigment synthesis. Both aerR and crtJ mutants retained essentially normal levels of photosystem synthesis under anaerobic conditions, indicating that their activities are specific for aerobic photosystem synthesis. The readthrough transcript from crtE promoter, which is regulated by AerR and CrtJ, seems to be significant in maintaining the expression levels of the light harvesting I (puf) genes in Rsp. centenum. We suggest that AerR and CrtJ regulate aerobic photosystem synthesis primarily through controlling activity of the transcriptional readthrough.
机译:在紫色光合细菌百岁螺旋藻(Rhodospirillum centenum)(也称为Rhodocista centenaria)中鉴定并鉴定了编码假定的CrtJ和AerR同源物的基因,该细菌即使在高度充气的条件下也能合成光色素。突变分析表明在Rsp中。百年纪念日,基因crtJ编码一种光合作用表达的阻遏物,就像在荚膜红细菌中一样,它表现出对光系统合成的高水平的氧气抑制作用。与Rba相反。荚膜,Rsp中的AerR。百岁老人似乎是有氧激活剂; aerR突变导致光色素合成水平显着降低。 aerR和crtJ突变体在厌氧条件下均保持了光系统合成的基本正常水平,表明它们的活性对有氧光系统合成具有特异性。受aerR和CrtJ调控的crtE启动子的通读转录本在维持Rsp中光捕获I(puf)基因的表达水平方面似乎很重要。百年纪念我们建议AerR和CrtJ主要通过控制转录通读的活性来调节有氧光系统的合成。

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