Utilization of electrons from the photosynthetic water splitting reaction for the generation of biofuels, commodities as well as application in biotransformations requires a partial rerouting of the photosynthetic electron transport chain. Due to its rather negative redox potential and its bifurcational function, ferredoxin at the acceptor side of Photosystem 1 is one of the focal points for such an engineering. With hydrogen production as model system, we show here the impact and potential of redox partner design involving ferredoxin (Fd), ferredoxin-oxido-reductase (FNR) and [FeFe]‑hydrogenase HydA1 on electron transport in a future cyanobacterial design cell of Synechocystis PCC 6803. X-ray-structure-based rational design and the allocat...
Ferredoxins are soluble iron sulphur proteins which function as electron donors in a number of metab...
AbstractIn the photosynthetic electron transfer (ET) chain, two electrons transfer from photosystem ...
Ferredoxin:NADP-oxidoreductase (FNR) catalyzes the reversible exchange of electrons between ferredox...
Utilization of electrons from the photosynthetic water splitting reaction for the generation of biof...
International audiencePhotosynthetic [2Fe-2S] plant-type ferredoxins have a central role in electron...
AbstractThe [FeFe] hydrogenases HydA1 and HydA2 in the green alga Chlamydomonas reinhardtii catalyze...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...
Photohydrogen generation in microalgae is catalysed by hydrogenases, which receive electrons from ph...
Ferredoxin I in spinach chloroplasts fulfils the role of distributing electrons of low redox potenti...
Plants and cyanobacteria are promising heterologous hosts for metabolic engineering, and particularl...
AbstractDuring evolution, cyanobacterial [2Fe-2S]-ferredoxins have developed structural features tha...
International audienceFerredoxin:NADP-oxidoreductase (FNR) catalyzes the reversible exchange of elec...
In the photosynthetic electron transfer (ET) chain, two electrons transfer from photosystem I to the...
Photobiological hydrogen production is an attractive, carbon-neutral means to convert solar energy ...
Cyanobacteria have garnered interest as potential cell factories for hydrogen production. In conjunc...
Ferredoxins are soluble iron sulphur proteins which function as electron donors in a number of metab...
AbstractIn the photosynthetic electron transfer (ET) chain, two electrons transfer from photosystem ...
Ferredoxin:NADP-oxidoreductase (FNR) catalyzes the reversible exchange of electrons between ferredox...
Utilization of electrons from the photosynthetic water splitting reaction for the generation of biof...
International audiencePhotosynthetic [2Fe-2S] plant-type ferredoxins have a central role in electron...
AbstractThe [FeFe] hydrogenases HydA1 and HydA2 in the green alga Chlamydomonas reinhardtii catalyze...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...
Photohydrogen generation in microalgae is catalysed by hydrogenases, which receive electrons from ph...
Ferredoxin I in spinach chloroplasts fulfils the role of distributing electrons of low redox potenti...
Plants and cyanobacteria are promising heterologous hosts for metabolic engineering, and particularl...
AbstractDuring evolution, cyanobacterial [2Fe-2S]-ferredoxins have developed structural features tha...
International audienceFerredoxin:NADP-oxidoreductase (FNR) catalyzes the reversible exchange of elec...
In the photosynthetic electron transfer (ET) chain, two electrons transfer from photosystem I to the...
Photobiological hydrogen production is an attractive, carbon-neutral means to convert solar energy ...
Cyanobacteria have garnered interest as potential cell factories for hydrogen production. In conjunc...
Ferredoxins are soluble iron sulphur proteins which function as electron donors in a number of metab...
AbstractIn the photosynthetic electron transfer (ET) chain, two electrons transfer from photosystem ...
Ferredoxin:NADP-oxidoreductase (FNR) catalyzes the reversible exchange of electrons between ferredox...