首页> 外文期刊>Molecular Microbiology >Light-dependent regulation of photosynthesis genes in Rhodobacter sphaeroides 2.4.1 is coordinately controlled by photosynthetic electron transport via the PrrBA two-component system and the photoreceptor AppA.
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Light-dependent regulation of photosynthesis genes in Rhodobacter sphaeroides 2.4.1 is coordinately controlled by photosynthetic electron transport via the PrrBA two-component system and the photoreceptor AppA.

机译:球形红球菌2.4.1中光合作用基因的光依赖性调节是通过PrrBA两组分系统和光感受器AppA通过光合电子传递来协调控制的。

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摘要

Formation of the photosynthetic apparatus in Rhodobacter is regulated by oxygen tension and light intensity. Here we show that in anaerobically grown Rhodobacter cells a light-dependent increase in expression of the puc and puf operons encoding structural proteins of the photosynthetic complexes requires an active photosynthetic electron transport. The redox-sensitive CrtJ/PpsR repressor of photosynthesis genes, which was suggested to mediate electron transport-dependent signals, is not involved in this light-dependent signal chain. Our data reveal that the signal initiated in the photosynthetic reaction centre is transmitted via components of the electron transport chain and the PrrB/PrrA two-component system in Rhodobacter sphaeroides. Under blue light illumination in the absence of oxygen this signal leads to activation of photosynthesis genes and interferes with a blue-light repression mediated by the AppA photoreceptor and the PpsR transcriptional repressor in R. sphaeroides. Thus, light either sensed by a photoreceptor or initiating photosynthetic electron transport has opposite effects on the transcription of photosynthesis genes. Both signalling pathways involve redox-dependent steps that finally determine the effect of light on gene expression.
机译:红细菌中光合作用装置的形成受氧张力和光强度的调节。在这里,我们显示在厌氧生长的红细菌细胞中,编码光合复合物结构蛋白的puc和puf操纵子表达的光依赖性增加需要活性光合电子传输。光合基因的氧化还原敏感的CrtJ / PpsR阻遏物,被建议介导依赖于电子传输的信号,但不参与该依赖光的信号链。我们的数据表明,在光合反应中心中引发的信号是通过球形红球菌中电子传输链的组分和PrrB / PrrA两组分系统传递的。在没有氧气的蓝光照射下,该信号导致光合作用基因的激活,并干扰由球形红球藻中的AppA感光体和PpsR转录阻遏物介导的蓝光抑制。因此,由感光器感应或启动光合作用电子传输的光对光合作用基因的转录具有相反的作用。两种信号通路均涉及氧化还原依赖性步骤,这些步骤最终决定了光对基因表达的影响。

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