International audienceThe crystal structure of the Escherichia coli O2-sensitive C19G [NiFe]-hydrogenase-1 variant shows that the mutation results in a novel FeS cluster, proximal to the Ni-Fe active site. While the proximal cluster of the native O2-tolerant enzyme can transfer two electrons to that site, EPR spectroscopy shows that the modified cluster can transfer only one electron, this shortfall coinciding with O2 sensitivity. Computational studies on electron transfer help to explain how the structural and redox properties of the novel FeS cluster modulate the observed phenotype
International audienceWe report the 3.3 Å resolution structure of dimeric membrane-bound O(2)-tolera...
We report the 3.3 Å resolution structure of dimeric membrane-bound O(2)-tolerant hydrogenase 1 from ...
The bacterial [NiFe]-hydrogenases have been classified as either 'standard' or 'O-2-tolerant' based ...
International audienceThe crystal structure of the Escherichia coli O2-sensitive C19G [NiFe]-hydroge...
The crystal structure of the Escherichia coli O2-sensitive C19G [NiFe]-hydrogenase-1 variant shows t...
The crystal structure of the Escherichia coli O2-sensitive C19G [NiFe]-hydrogenase-1 variant shows t...
The unusual [4Fe-3S] cluster proximal to the active site plays a crucial role in allowing a class of...
The unusual [4Fe–3S] cluster proximal to the active site plays a crucial role in allowing a class of...
Hydrogenase enzymes catalyse the reversible conversion of protons and electrons into molecular hydro...
The origin of the tolerance of a subclass of [NiFe]-hydrogenases to the presence of oxygen was uncle...
An important clue to the mechanism for O(2) tolerance of certain [NiFe]-hydrogenases is the conserve...
An important clue to the mechanism for O-2 tolerance of certain [NiFe]-hydrogenases is the conserved...
SummaryWe report the 3.3 Å resolution structure of dimeric membrane-bound O2-tolerant hydrogenase 1 ...
International audienceNature has evolved three different ways of metabolizing hydrogen, represented ...
The [NiFe] hydrogenases use an electron transfer relay of three FeS clusters - proximal, medial and ...
International audienceWe report the 3.3 Å resolution structure of dimeric membrane-bound O(2)-tolera...
We report the 3.3 Å resolution structure of dimeric membrane-bound O(2)-tolerant hydrogenase 1 from ...
The bacterial [NiFe]-hydrogenases have been classified as either 'standard' or 'O-2-tolerant' based ...
International audienceThe crystal structure of the Escherichia coli O2-sensitive C19G [NiFe]-hydroge...
The crystal structure of the Escherichia coli O2-sensitive C19G [NiFe]-hydrogenase-1 variant shows t...
The crystal structure of the Escherichia coli O2-sensitive C19G [NiFe]-hydrogenase-1 variant shows t...
The unusual [4Fe-3S] cluster proximal to the active site plays a crucial role in allowing a class of...
The unusual [4Fe–3S] cluster proximal to the active site plays a crucial role in allowing a class of...
Hydrogenase enzymes catalyse the reversible conversion of protons and electrons into molecular hydro...
The origin of the tolerance of a subclass of [NiFe]-hydrogenases to the presence of oxygen was uncle...
An important clue to the mechanism for O(2) tolerance of certain [NiFe]-hydrogenases is the conserve...
An important clue to the mechanism for O-2 tolerance of certain [NiFe]-hydrogenases is the conserved...
SummaryWe report the 3.3 Å resolution structure of dimeric membrane-bound O2-tolerant hydrogenase 1 ...
International audienceNature has evolved three different ways of metabolizing hydrogen, represented ...
The [NiFe] hydrogenases use an electron transfer relay of three FeS clusters - proximal, medial and ...
International audienceWe report the 3.3 Å resolution structure of dimeric membrane-bound O(2)-tolera...
We report the 3.3 Å resolution structure of dimeric membrane-bound O(2)-tolerant hydrogenase 1 from ...
The bacterial [NiFe]-hydrogenases have been classified as either 'standard' or 'O-2-tolerant' based ...