[FeFe]-hydrogenases as biocatalysts in bio-hydrogen production
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences,General Agricultural and Biological Sciences,General Environmental Science
Link
http://link.springer.com/article/10.1007/s12210-016-0584-9/fulltext.html
Reference108 articles.
1. Adamska A, Silakov A, Lambertz C, Rüdiger O, Happe T, Reijerse E, Lubitz W (2012) Identification and characterization of the “super-reduced” state of the H-cluster in [FeFe] hydrogenase: a new building block for the catalytic cycle? Angew Chem Int Ed 51:11458–11462
2. Adamska-Venkatesh A, Krawietz D, Siebel J, Weber K, Happe T, Reijerse W, Lubitz W (2014) New redox states observed in [FeFe] hydrogenases reveal redox coupling within the H-cluster. J Am Chem Soc 136:11339–11346
3. Albertini M, Berto P, Vallese F, Di Valentin M, Costantini P, Carbonera D (2015) Probing the solvent accessibility of the [4Fe−4S] cluster of the hydrogenase maturation protein HydF from Thermotoga neapolitana by HYSCORE and 3p-ESEEM. J Phys Chem B 119:13680–13689
4. Applegate AM, Lubner CE, Knörzer P, Happe T, Golbeck JH (2016) Quantum yield measurements of light-induced H2 generation in a photosystem I-[FeFe]-H2ase nanoconstruct. Photosynth Res 127(1):5–11
5. Baffert C, Demuez M, Cournac L, Burlat B, Guigliarelli B, Bertrand P, Girbal L, Léger C (2008) Hydrogen-activating enzymes: activity does not correlate with oxygen sensitivity. Angew Chem Int Ed 47:2052–2054
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