Photosystem II (PSII) is a key component of photosynthesis, the process of converting sunlight into the chemical energy of life. In plant cells, it forms a unique oligomeric macrostructure in membranes of the chloroplasts. Several light-harvesting antenna complexes are organized precisely in the PSII macrostructure—the major trimeric complexes (LHCII) that bind 70% of PSII chlorophyll and three minor monomeric complexes—which together form PSII supercomplexes. The antenna complexes are essential for collecting sunlight and regulating photosynthesis, but the relationship between these functions and their molecular architecture is unresolved. Here we report that antisense Arabidopsis plants lacking the proteins that form LHCII trimers have PS...
The photosystem II (PSII) light-harvesting antenna in higher plants contains a number of highly cons...
International audiencePhotosystem II (PSII) is a light-driven protein, involved in the primary react...
Photosystem II ( PSII) is a large multiprotein complex, which catalyses water splitting and plastoqu...
Photosystem II (PSII) is a key component of photosynthesis, the process of converting sunlight into ...
A genetic approach has been adopted to investigate the organization of the light-harvesting proteins...
A genetic approach has been adopted to investigate the organization of the light-harvesting proteins...
The organization of Arabidopsis thaliana photosystem II (PSII) and its associated light-harvesting a...
Arabidopsis plants in which the major trimeric light harvesting complex (LHCIIb) is eliminated by an...
The organization of Arabidopsis thaliana photosystem II (PSII) and its associated light-harvesting a...
A genetic approach has been adopted to investigate the organization of the light-harvesting proteins...
Plant photosystem II (PSII) is organized into large supercomplexes with variable amount of membrane-...
International audienceThe biological conversion of light energy into chemical energy is performed by...
The photosystem II (PSII) light-harvesting antenna in higher plants contains a number of highly cons...
Photosystem I (PSI) and Photosystem II (PSII) can form supercomplexes with various types of antenna ...
The photosystem II (PSII) light-harvesting antenna in higher plants contains a number of highly cons...
International audiencePhotosystem II (PSII) is a light-driven protein, involved in the primary react...
Photosystem II ( PSII) is a large multiprotein complex, which catalyses water splitting and plastoqu...
Photosystem II (PSII) is a key component of photosynthesis, the process of converting sunlight into ...
A genetic approach has been adopted to investigate the organization of the light-harvesting proteins...
A genetic approach has been adopted to investigate the organization of the light-harvesting proteins...
The organization of Arabidopsis thaliana photosystem II (PSII) and its associated light-harvesting a...
Arabidopsis plants in which the major trimeric light harvesting complex (LHCIIb) is eliminated by an...
The organization of Arabidopsis thaliana photosystem II (PSII) and its associated light-harvesting a...
A genetic approach has been adopted to investigate the organization of the light-harvesting proteins...
Plant photosystem II (PSII) is organized into large supercomplexes with variable amount of membrane-...
International audienceThe biological conversion of light energy into chemical energy is performed by...
The photosystem II (PSII) light-harvesting antenna in higher plants contains a number of highly cons...
Photosystem I (PSI) and Photosystem II (PSII) can form supercomplexes with various types of antenna ...
The photosystem II (PSII) light-harvesting antenna in higher plants contains a number of highly cons...
International audiencePhotosystem II (PSII) is a light-driven protein, involved in the primary react...
Photosystem II ( PSII) is a large multiprotein complex, which catalyses water splitting and plastoqu...