The structural organization of proteins in biological membranes can affect their function. Photosynthetic thylakoid membranes in chloroplasts have the remarkable ability to change their supramolecular organization between disordered and semicrystalline states. Although the change to the semicrystalline state is known to be triggered by abiotic factors, the functional significance of this protein organization has not yet been understood. Taking advantage of an Arabidopsis thaliana fatty acid desaturase mutant (fad5) that constitutively forms semicrystalline arrays, we systematically test the functional implications of protein crystals in photosynthetic membranes. Here we show that the change into an ordered state facilitates molecular diffus...
Flexibility of chloroplast thylakoid membrane proteins is essential for plant fitness and survival u...
© 2021Chloroplast thylakoid membranes in plants and green algae form 3D architectures of stacked gra...
© 2021Chloroplast thylakoid membranes in plants and green algae form 3D architectures of stacked gra...
The structural organization of proteins in biological membranes can affect their function. Photosynt...
The structural organization of proteins in biological membranes can affect their function. Photosynt...
International audiencePhotosynthesis has to work efficiently in contrasting environments such as in ...
Photosynthetic machinery in higher plants is localised in the thylakoids enclosed in a chloroplast. ...
AbstractThe survival and fitness of photosynthetic organisms is critically dependent on the flexible...
Thylakoid membranes in chloroplasts contain photosynthetic protein complexes that convert light ener...
Thylakoid membranes in chloroplasts contain photosynthetic protein complexes that convert light ener...
Photosystem II (PSII) and its associated light-harvesting complex II (LHCII) are highly concentrated...
Flexibility of chloroplast thylakoid membrane proteins is essential for plant fitness and survival u...
Photosystem II (PSII) and its associated light-harvesting complex II (LHCII) are highly concentrated...
Thesis (Ph.D.), Molecular Plant Science Program, Washington State UniversityThe survival and fitness...
Chloroplast thylakoid membranes accommodate densely packed protein complexes in ordered, often semi-...
Flexibility of chloroplast thylakoid membrane proteins is essential for plant fitness and survival u...
© 2021Chloroplast thylakoid membranes in plants and green algae form 3D architectures of stacked gra...
© 2021Chloroplast thylakoid membranes in plants and green algae form 3D architectures of stacked gra...
The structural organization of proteins in biological membranes can affect their function. Photosynt...
The structural organization of proteins in biological membranes can affect their function. Photosynt...
International audiencePhotosynthesis has to work efficiently in contrasting environments such as in ...
Photosynthetic machinery in higher plants is localised in the thylakoids enclosed in a chloroplast. ...
AbstractThe survival and fitness of photosynthetic organisms is critically dependent on the flexible...
Thylakoid membranes in chloroplasts contain photosynthetic protein complexes that convert light ener...
Thylakoid membranes in chloroplasts contain photosynthetic protein complexes that convert light ener...
Photosystem II (PSII) and its associated light-harvesting complex II (LHCII) are highly concentrated...
Flexibility of chloroplast thylakoid membrane proteins is essential for plant fitness and survival u...
Photosystem II (PSII) and its associated light-harvesting complex II (LHCII) are highly concentrated...
Thesis (Ph.D.), Molecular Plant Science Program, Washington State UniversityThe survival and fitness...
Chloroplast thylakoid membranes accommodate densely packed protein complexes in ordered, often semi-...
Flexibility of chloroplast thylakoid membrane proteins is essential for plant fitness and survival u...
© 2021Chloroplast thylakoid membranes in plants and green algae form 3D architectures of stacked gra...
© 2021Chloroplast thylakoid membranes in plants and green algae form 3D architectures of stacked gra...