"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can sustain high catalytic H2 oxidation activity in the presence of O2-an intruder that normally incapacitates the sulfur- and electron-rich active site. The mechanism of "O2 tolerance" involves a critical role for the Fe-S clusters of the electron relay, which is to ensure the availability-for immediate transfer back to the active site-of all of the electrons required to reduce an attacking O2 molecule completely to harmless H2O. The unique [4Fe-3S] cluster proximal to the active site is crucial because it can rapidly transfer two of the electrons needed. Here we investigate and establish the equally crucial role of the high potential medial [3Fe...
The bacterial [NiFe]-hydrogenases have been classified as either 'standard' or 'O-2-tolerant' based ...
An important clue to the mechanism for O-2 tolerance of certain [NiFe]-hydrogenases is the conserved...
The origin of the tolerance of a subclass of [NiFe]-hydrogenases to the presence of oxygen was uncle...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can s...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can s...
International audience"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can ...
“Hyd-1”, produced by Escherichia coli, exemplifies a special class of [NiFe]-hydrogenase that can su...
Hydrogenase enzymes catalyse the reversible conversion of protons and electrons into molecular hydro...
The [NiFe] hydrogenases use an electron transfer relay of three FeS clusters - proximal, medial and ...
Hydrogenases are essential for H(2) cycling in microbial metabolism and serve as valuable blueprints...
An oxygen-tolerant respiratory [NiFe]-hydrogenase is proven to be a four-electron hydrogen/oxygen ox...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
International audienceNature has evolved three different ways of metabolizing hydrogen, represented ...
An important clue to the mechanism for O(2) tolerance of certain [NiFe]-hydrogenases is the conserve...
The bacterial [NiFe]-hydrogenases have been classified as either 'standard' or 'O-2-tolerant' based ...
An important clue to the mechanism for O-2 tolerance of certain [NiFe]-hydrogenases is the conserved...
The origin of the tolerance of a subclass of [NiFe]-hydrogenases to the presence of oxygen was uncle...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can s...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can s...
International audience"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-...
"Hyd-1", produced by Escherichia coli , exemplifies a special class of [NiFe]-hydrogenase that can ...
“Hyd-1”, produced by Escherichia coli, exemplifies a special class of [NiFe]-hydrogenase that can su...
Hydrogenase enzymes catalyse the reversible conversion of protons and electrons into molecular hydro...
The [NiFe] hydrogenases use an electron transfer relay of three FeS clusters - proximal, medial and ...
Hydrogenases are essential for H(2) cycling in microbial metabolism and serve as valuable blueprints...
An oxygen-tolerant respiratory [NiFe]-hydrogenase is proven to be a four-electron hydrogen/oxygen ox...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
International audienceNature has evolved three different ways of metabolizing hydrogen, represented ...
An important clue to the mechanism for O(2) tolerance of certain [NiFe]-hydrogenases is the conserve...
The bacterial [NiFe]-hydrogenases have been classified as either 'standard' or 'O-2-tolerant' based ...
An important clue to the mechanism for O-2 tolerance of certain [NiFe]-hydrogenases is the conserved...
The origin of the tolerance of a subclass of [NiFe]-hydrogenases to the presence of oxygen was uncle...