AbstractFacultative photosynthetic bacteria switch their energy generation mechanism from respiration to photosynthesis depending on oxygen tension and light. Part of this transition is mediated by the aerobic transcriptional repressor PpsR. In Rhodobacter sphaeroides, the repressive action of PpsR is antagonized by the redox- and blue-light-sensitive flavoprotein AppA which results in a unique phenotype: The repression of photosynthesis genes at intermediate oxygen levels and high light intensity, which is believed to reduce the risk of photooxidative stress. To analyze the underlying mechanism we developed a simple mathematical model based on the AppA-dependent reduction of a disulfide bond in PpsR and the light-sensitive complex formatio...
PpsR is a major regulator of photosynthesis gene expression among all characterized purple photosynt...
The transcriptional antirepressor AppA from the photosynthetic bacterium Rhodobacter sphaeroides sen...
International audienceHeme has been shown to have a crucial role in the signal transduction mechanis...
Facultative photosynthetic bacteria switch their energy generation mechanism from respiration to pho...
Switching energy generation mechanism from photosynthesis to respiration in facultative photosynthet...
AbstractFacultative photosynthetic bacteria switch their energy generation mechanism from respiratio...
Facultative photosynthetic bacteria switch their energy generation mechanism from respiration to pho...
Purple bacteria derive energy from aerobic respiration or photosynthesis depending on the availabili...
BackgroundPhotosynthetic (PS) gene expression in Rhodobacter sphaeroides is regulated in response to...
AbstractPhotosynthetic bacteria regulate photosystem synthesis in response to alterations in oxygen ...
The anoxygenic phototrophic bacterium Rhodobacter sphaeroides uses different energy sources, dependi...
A regulatory protein, PpaA, involved in photosystem formation in the anoxygenic phototrophic proteob...
The Rhodobacter sphaeroides protein AppA has the unique quality of sensing and transmitting light an...
The expression of photosynthesis genes in the facultatively photosynthetic bacterium Rhodobacter sph...
ABSTRACT The DNA binding activity of the photosystem-specific repressor PpsR is known to be represse...
PpsR is a major regulator of photosynthesis gene expression among all characterized purple photosynt...
The transcriptional antirepressor AppA from the photosynthetic bacterium Rhodobacter sphaeroides sen...
International audienceHeme has been shown to have a crucial role in the signal transduction mechanis...
Facultative photosynthetic bacteria switch their energy generation mechanism from respiration to pho...
Switching energy generation mechanism from photosynthesis to respiration in facultative photosynthet...
AbstractFacultative photosynthetic bacteria switch their energy generation mechanism from respiratio...
Facultative photosynthetic bacteria switch their energy generation mechanism from respiration to pho...
Purple bacteria derive energy from aerobic respiration or photosynthesis depending on the availabili...
BackgroundPhotosynthetic (PS) gene expression in Rhodobacter sphaeroides is regulated in response to...
AbstractPhotosynthetic bacteria regulate photosystem synthesis in response to alterations in oxygen ...
The anoxygenic phototrophic bacterium Rhodobacter sphaeroides uses different energy sources, dependi...
A regulatory protein, PpaA, involved in photosystem formation in the anoxygenic phototrophic proteob...
The Rhodobacter sphaeroides protein AppA has the unique quality of sensing and transmitting light an...
The expression of photosynthesis genes in the facultatively photosynthetic bacterium Rhodobacter sph...
ABSTRACT The DNA binding activity of the photosystem-specific repressor PpsR is known to be represse...
PpsR is a major regulator of photosynthesis gene expression among all characterized purple photosynt...
The transcriptional antirepressor AppA from the photosynthetic bacterium Rhodobacter sphaeroides sen...
International audienceHeme has been shown to have a crucial role in the signal transduction mechanis...