International audienceThe mechanism of reaction of FeFe hydrogenases with oxygen has been debated. It is complex, apparently very dependent on the details of the protein structure, and difficult to study using conventional kinetic techniques. Here we build on our recent work on the anaerobic inactivation of the enzyme [Fourmond et al, Nat. Chem. 4 336 (2014)] to propose and apply a new method for studying this reaction. Using electrochemical measurements of the turnover rate of hydrogenase, we could resolve the first steps of the inhibition reaction and accurately determine their rates. We show that the two most studied FeFe hydrogenases, from Chlamydomonas reinhardtii and Clostridium acetobutylicum, react with O2 according to the same mech...
© 2016 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. FeFe hydrogenases...
International audienceFeFe hydrogenases are the most efficient H$_2$-producing enzymes. However, ina...
International audienceFeFe hydrogenases are the most efficient H$_2$-producing enzymes. However, ina...
© 2015 American Chemical Society. The mechanism of reaction of FeFe hydrogenases with oxygen has bee...
© 2015 American Chemical Society. The mechanism of reaction of FeFe hydrogenases with oxygen has bee...
International audienceThe mechanism of reaction of FeFe hydrogenases with oxygen has been debated. I...
International audienceThe mechanism of reaction of FeFe hydrogenases with oxygen has been debated. I...
International audienceThe mechanism of reaction of FeFe hydrogenases with oxygen has been debated. I...
International audienceThe mechanism of reaction of FeFe hydrogenases with oxygen has been debated. I...
A major obstacle for future biohydrogen production is the oxygen sensitivity of [FeFe]-hydrogenases,...
A new strategy is described for comparing, quantitatively, the ability of hydrogenases to tolerate e...
Hydrogenases are enzymes that catalyze hydrogen oxidation and production. The so-called "FeFe hydrog...
FeFe hydrogenases are the most efficient H2-producing enzymes. However, inactivation by O2 remains a...
Hydrogenases are enzymes that catalyze hydrogen oxidation and production. The so-called "FeFe hydrog...
FeFe hydrogenases are the most efficient H2-producing enzymes. However, inactivation by O2 remains a...
© 2016 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. FeFe hydrogenases...
International audienceFeFe hydrogenases are the most efficient H$_2$-producing enzymes. However, ina...
International audienceFeFe hydrogenases are the most efficient H$_2$-producing enzymes. However, ina...
© 2015 American Chemical Society. The mechanism of reaction of FeFe hydrogenases with oxygen has bee...
© 2015 American Chemical Society. The mechanism of reaction of FeFe hydrogenases with oxygen has bee...
International audienceThe mechanism of reaction of FeFe hydrogenases with oxygen has been debated. I...
International audienceThe mechanism of reaction of FeFe hydrogenases with oxygen has been debated. I...
International audienceThe mechanism of reaction of FeFe hydrogenases with oxygen has been debated. I...
International audienceThe mechanism of reaction of FeFe hydrogenases with oxygen has been debated. I...
A major obstacle for future biohydrogen production is the oxygen sensitivity of [FeFe]-hydrogenases,...
A new strategy is described for comparing, quantitatively, the ability of hydrogenases to tolerate e...
Hydrogenases are enzymes that catalyze hydrogen oxidation and production. The so-called "FeFe hydrog...
FeFe hydrogenases are the most efficient H2-producing enzymes. However, inactivation by O2 remains a...
Hydrogenases are enzymes that catalyze hydrogen oxidation and production. The so-called "FeFe hydrog...
FeFe hydrogenases are the most efficient H2-producing enzymes. However, inactivation by O2 remains a...
© 2016 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. FeFe hydrogenases...
International audienceFeFe hydrogenases are the most efficient H$_2$-producing enzymes. However, ina...
International audienceFeFe hydrogenases are the most efficient H$_2$-producing enzymes. However, ina...