International audiencePhotosynthetic complex I enables cyclic electron flow around photosystem I, a regulatory mechanism for photosynthetic energy conversion. We report a 3.3-angstrom-resolution cryo–electron microscopy structure of photosynthetic complex I from the cyanobacterium Thermosynechococcus elongatus. The model reveals structural adaptations that facilitate binding and electron transfer from the photosynthetic electron carrier ferredoxin. By mimicking cyclic electron flow with isolated components in vitro, we demonstrate that ferredoxin directly mediates electron transfer between photosystem I and complex I, instead of using intermediates such as NADPH (the reduced form of nicotinamide adenine dinucleotide phosphate). A large rate...
A covalent stoichiometric complex between photosystem I (PSI) and ferredoxin from the cyanobacterium...
Abstract: At the end of the linear photosynthetic electron transfer (PET) chain, the small soluble p...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...
International audiencePhotosynthetic complex I enables cyclic electron flow around photosystem I, a ...
Photosynthetic complex I enables cyclic electron flow around photosystem I, a regulatory mechanism f...
The most crucial step in oxygenic Photosynthesis, which maintains our biosphere, is the light-driven...
AbstractThe photoproduction of NADPH in photosynthetic organisms requires the successive or concomit...
Photosynthesis and respiration rely upon a proton gradient to produce ATP. In photosynthesis, the Re...
AbstractIn the photosynthetic electron transfer (ET) chain, two electrons transfer from photosystem ...
In the photosynthetic electron transfer (ET) chain, two electrons transfer from photosystem I to the...
International audienceFlavodiiron proteins (FDPs) of photosynthetic organisms play a photoprotective...
International audiencePhotosystem I (PSI), a large protein complex located in the thylakoid membrane...
AbstractPhotosystem I (PS I) is a large membrane protein complex that catalyzes the first step of so...
Cyanobacterial photosystem I supercomplexes bind to iron-stress-induced proteins IsiA and flavodoxin...
Efficient solar energy conversion is ensured by the organization, physical association, and physiolo...
A covalent stoichiometric complex between photosystem I (PSI) and ferredoxin from the cyanobacterium...
Abstract: At the end of the linear photosynthetic electron transfer (PET) chain, the small soluble p...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...
International audiencePhotosynthetic complex I enables cyclic electron flow around photosystem I, a ...
Photosynthetic complex I enables cyclic electron flow around photosystem I, a regulatory mechanism f...
The most crucial step in oxygenic Photosynthesis, which maintains our biosphere, is the light-driven...
AbstractThe photoproduction of NADPH in photosynthetic organisms requires the successive or concomit...
Photosynthesis and respiration rely upon a proton gradient to produce ATP. In photosynthesis, the Re...
AbstractIn the photosynthetic electron transfer (ET) chain, two electrons transfer from photosystem ...
In the photosynthetic electron transfer (ET) chain, two electrons transfer from photosystem I to the...
International audienceFlavodiiron proteins (FDPs) of photosynthetic organisms play a photoprotective...
International audiencePhotosystem I (PSI), a large protein complex located in the thylakoid membrane...
AbstractPhotosystem I (PS I) is a large membrane protein complex that catalyzes the first step of so...
Cyanobacterial photosystem I supercomplexes bind to iron-stress-induced proteins IsiA and flavodoxin...
Efficient solar energy conversion is ensured by the organization, physical association, and physiolo...
A covalent stoichiometric complex between photosystem I (PSI) and ferredoxin from the cyanobacterium...
Abstract: At the end of the linear photosynthetic electron transfer (PET) chain, the small soluble p...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...