The tolerance towards oxic conditions of O2-tolerant [NiFe] hydrogenases has been attributed to an unusual [4Fe–3S] cluster that lies proximal to the [NiFe] active site. Upon exposure to oxygen, this cluster converts to a superoxidised (5+) state, which is believed to secure the formation of the so-called Ni–B state that is rapidly reactivated under reducing conditions. Here, the reductive reactivation of the membrane-bound [NiFe]-hydrogenase (MBH) from Ralstonia eutropha in a native-like lipid membrane was characterised and compared to a variant that instead carries a typical [4Fe–4S] proximal cluster. Reactivation from the Ni–B state was faster in the [4Fe–4S] variant, suggesting that the reactivation rate in MBH is limited by the reducti...
The origin of the tolerance of a subclass of [NiFe]-hydrogenases to the presence of oxygen was uncle...
Hydrogenases are structurally complex enzymes that catalyse the production and oxidation of H2 in a ...
“Hyd-1”, produced by Escherichia coli, exemplifies a special class of [NiFe]-hydrogenase that can su...
The tolerance towards oxic conditions of O2-tolerant [NiFe] hydrogenases has been attributed to an u...
Hydrogenases are oxygen-sensitive enzymes that catalyze the conversion between protons and hydrogen....
[NiFe] hydrogenases are enzymes that catalyze the splitting of molecular hydrogen according to the r...
Hydrogenases are essential for H(2) cycling in microbial metabolism and serve as valuable blueprints...
Hydrogenases are essential for H(2) cycling in microbial metabolism and serve as valuable blueprints...
International audienceNature has evolved three different ways of metabolizing hydrogen, represented ...
International audienceNature has evolved three different ways of metabolizing hydrogen, represented ...
AbstractThe class of [NiFe]-hydrogenases comprises oxygen-sensitive periplasmic (PH) and oxygen-tole...
The [NiFe] hydrogenases use an electron transfer relay of three FeS clusters - proximal, medial and ...
Naturally occurring oxygen tolerant NiFe membrane bound hydrogenases have a conserved catalytic bias...
The origin of the tolerance of a subclass of [NiFe]-hydrogenases to the presence of oxygen was uncle...
‘Oxygen-tolerant’ [NiFe]-hydrogenases can catalyze H2 oxidation under aerobic conditions, avoiding o...
The origin of the tolerance of a subclass of [NiFe]-hydrogenases to the presence of oxygen was uncle...
Hydrogenases are structurally complex enzymes that catalyse the production and oxidation of H2 in a ...
“Hyd-1”, produced by Escherichia coli, exemplifies a special class of [NiFe]-hydrogenase that can su...
The tolerance towards oxic conditions of O2-tolerant [NiFe] hydrogenases has been attributed to an u...
Hydrogenases are oxygen-sensitive enzymes that catalyze the conversion between protons and hydrogen....
[NiFe] hydrogenases are enzymes that catalyze the splitting of molecular hydrogen according to the r...
Hydrogenases are essential for H(2) cycling in microbial metabolism and serve as valuable blueprints...
Hydrogenases are essential for H(2) cycling in microbial metabolism and serve as valuable blueprints...
International audienceNature has evolved three different ways of metabolizing hydrogen, represented ...
International audienceNature has evolved three different ways of metabolizing hydrogen, represented ...
AbstractThe class of [NiFe]-hydrogenases comprises oxygen-sensitive periplasmic (PH) and oxygen-tole...
The [NiFe] hydrogenases use an electron transfer relay of three FeS clusters - proximal, medial and ...
Naturally occurring oxygen tolerant NiFe membrane bound hydrogenases have a conserved catalytic bias...
The origin of the tolerance of a subclass of [NiFe]-hydrogenases to the presence of oxygen was uncle...
‘Oxygen-tolerant’ [NiFe]-hydrogenases can catalyze H2 oxidation under aerobic conditions, avoiding o...
The origin of the tolerance of a subclass of [NiFe]-hydrogenases to the presence of oxygen was uncle...
Hydrogenases are structurally complex enzymes that catalyse the production and oxidation of H2 in a ...
“Hyd-1”, produced by Escherichia coli, exemplifies a special class of [NiFe]-hydrogenase that can su...