[FeFe]-Hydrogenases are hydrogen producing metalloenzymes with excellent catalytic capacities, highly relevant in the context of a future hydrogen economy. Here we demonstrate the synthetic activation of a heterologously expressed [FeFe]-hydrogenase in living cells of Synechocystis PCC 6803, a photoautotrophic microbial chassis with high potential for biotechnological energy applications. H-2-Evolution assays clearly show that the non-native, semi-synthetic enzyme links to the native metabolism in living cells.Adam Wegelius and Namita Khanna contributed equally to this work.</p
Certain anaerobic microorganisms evolved a mechanism to use H-2 as a reductant in their energy metab...
Hydrogen gas is a major biofuel and is metabolized by a wide range of microorganisms. Microbial hydr...
Hydrogen gas is a major biofuel and is metabolized by a wide range of microorganisms. Microbial hydr...
[FeFe]-Hydrogenases are hydrogen producing metalloenzymes with excellent catalytic capacities, highl...
Hydrogen (H2) is a promising future chemical energy carrier and feedstock with several renewable pro...
Photosynthetic microbes can be utilized for hydrogen production, generating a clean, carbon neutral ...
A global hydrogen economy could ensure environmentally sustainable, safe and cost-efficient renewabl...
Hydrogenases are among the fastest H-2 evolving catalysts known to date and have been extensively st...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
AbstractBiohydrogen is a potentially useful product of microbial energy metabolism. One approach to ...
Hydrogen is considered one of the key enablers of the transition towards a sustainable and net-zero ...
Biohybrid technologies like semiartificial photosynthesis are attracting increased attention, as the...
Molecular hydrogen (H-2) can be produced in green microalgae by [FeFe]-hydrogenases as a direct prod...
International audienceHydrogenases are the most active molecular catalysts for hydrogen production a...
International audienceThe conversion of solar energy into hydrogen represents a highly attractive st...
Certain anaerobic microorganisms evolved a mechanism to use H-2 as a reductant in their energy metab...
Hydrogen gas is a major biofuel and is metabolized by a wide range of microorganisms. Microbial hydr...
Hydrogen gas is a major biofuel and is metabolized by a wide range of microorganisms. Microbial hydr...
[FeFe]-Hydrogenases are hydrogen producing metalloenzymes with excellent catalytic capacities, highl...
Hydrogen (H2) is a promising future chemical energy carrier and feedstock with several renewable pro...
Photosynthetic microbes can be utilized for hydrogen production, generating a clean, carbon neutral ...
A global hydrogen economy could ensure environmentally sustainable, safe and cost-efficient renewabl...
Hydrogenases are among the fastest H-2 evolving catalysts known to date and have been extensively st...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
AbstractBiohydrogen is a potentially useful product of microbial energy metabolism. One approach to ...
Hydrogen is considered one of the key enablers of the transition towards a sustainable and net-zero ...
Biohybrid technologies like semiartificial photosynthesis are attracting increased attention, as the...
Molecular hydrogen (H-2) can be produced in green microalgae by [FeFe]-hydrogenases as a direct prod...
International audienceHydrogenases are the most active molecular catalysts for hydrogen production a...
International audienceThe conversion of solar energy into hydrogen represents a highly attractive st...
Certain anaerobic microorganisms evolved a mechanism to use H-2 as a reductant in their energy metab...
Hydrogen gas is a major biofuel and is metabolized by a wide range of microorganisms. Microbial hydr...
Hydrogen gas is a major biofuel and is metabolized by a wide range of microorganisms. Microbial hydr...