Bacterial photosynthesis relies on the interplay between light harvesting and electron transfer complexes, all of which are located within the intracytoplasmic membrane. These complexes capture and transfer solar energy, which is used to generate a proton gradient. In this study, we identify one of the factors that determines the organization of these complexes. We undertook a comparison of the organization of the light- harvesting complex 1 (LH1)/reaction center (RC) cores in the LH
AbstractA typical purple bacterial photosynthetic unit consists of two types of light-harvesting com...
In the purple phototrophic bacterium Rhodobacter sphaeroides, many protein complexes congregate with...
Light-harvesting complex 1 (LH1) and the reaction centre (RC) form a membrane-protein supercomplex t...
In purple photosynthetic bacteria, two light harvesting complexes (LH), LH2 and LH1, ensure the coll...
In purple photosynthetic bacteria, two light harvesting complexes (LH), LH2 and LH1, ensure the coll...
Photosynthesis relies on the delicate interplay between a specific set of membrane-bound pigment-pro...
Photosynthesis relies on the delicate interplay between a specific set of membrane-bound pigment-pro...
In photosynthesis, the harvesting of solar energy and its subsequent conversion into a stable charge...
AbstractMutant strains of the photosynthetic bacterium Rhodobacter sphaeroides, lacking either LH1, ...
The effect of the light harvesting 1 (LH1) antenna complex on the driving force for light-driven ele...
AbstractIn bacterial photosynthesis light-harvesting complexes, LH2 and LH1 absorb sunlight energy a...
The harvesting of solar radiation by purple photosynthetic bacteria is achieved by circular, integra...
A typical purple bacterial photosynthetic unit consists of two types of light-harvesting complex (LH...
The effect of the light harvesting 1 (LH1) antenna complex on the driving force for light-driven ele...
International audienceThe photosynthetic membrane in purple bacteria contains several pigment-protei...
AbstractA typical purple bacterial photosynthetic unit consists of two types of light-harvesting com...
In the purple phototrophic bacterium Rhodobacter sphaeroides, many protein complexes congregate with...
Light-harvesting complex 1 (LH1) and the reaction centre (RC) form a membrane-protein supercomplex t...
In purple photosynthetic bacteria, two light harvesting complexes (LH), LH2 and LH1, ensure the coll...
In purple photosynthetic bacteria, two light harvesting complexes (LH), LH2 and LH1, ensure the coll...
Photosynthesis relies on the delicate interplay between a specific set of membrane-bound pigment-pro...
Photosynthesis relies on the delicate interplay between a specific set of membrane-bound pigment-pro...
In photosynthesis, the harvesting of solar energy and its subsequent conversion into a stable charge...
AbstractMutant strains of the photosynthetic bacterium Rhodobacter sphaeroides, lacking either LH1, ...
The effect of the light harvesting 1 (LH1) antenna complex on the driving force for light-driven ele...
AbstractIn bacterial photosynthesis light-harvesting complexes, LH2 and LH1 absorb sunlight energy a...
The harvesting of solar radiation by purple photosynthetic bacteria is achieved by circular, integra...
A typical purple bacterial photosynthetic unit consists of two types of light-harvesting complex (LH...
The effect of the light harvesting 1 (LH1) antenna complex on the driving force for light-driven ele...
International audienceThe photosynthetic membrane in purple bacteria contains several pigment-protei...
AbstractA typical purple bacterial photosynthetic unit consists of two types of light-harvesting com...
In the purple phototrophic bacterium Rhodobacter sphaeroides, many protein complexes congregate with...
Light-harvesting complex 1 (LH1) and the reaction centre (RC) form a membrane-protein supercomplex t...