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Journal of the American Chemical Society|July 23, 2008
Structure of an F430 variant from archaea associated with anaerobic oxidation of methaneStefan Mayr, Christopher Latkoczy, Martin Krüger, et al.
Chemical Communications (Cambridge, England)|October 30, 2004
Active site structure and redox processes of cytochrome c oxidase immobilised in a novel biomimetic lipid membrane on an electrodeMarcel G Friedrich, Frank Giebeta, Renate Naumann, et al.
Chembiochem : a European Journal of Chemical Biology|September 6, 2023
[Fe]-Hydrogenase, Cofactor Biosynthesis and EngineeringFrancisco J Arriaza-Gallardo, Yu-Cong Zheng, Manuel Gehl, et al.
Journal of Applied Crystallography|August 10, 2019
Protein crystal structure determination with the crystallophore, a nucleating and phasing agentSylvain Engilberge, Tristan Wagner, Gianluca Santoni, et al.
Environmental Microbiology|March 12, 2011
Bacterial enzymes for dissimilatory sulfate reduction in a marine microbial mat (Black Sea) mediating anaerobic oxidation of methaneMirko Basen, Martin Krüger, Jana Milucka, et al.
Journal of Molecular Biology|March 17, 2006
The crystal structure of the apoenzyme of the iron-sulphur cluster-free hydrogenaseOliver Pilak, Björn Mamat, Sonja Vogt, et al.
Angewandte Chemie (International Ed. in English)|July 9, 2016
Identification of HcgC as a SAM-Dependent Pyridinol Methyltransferase in [Fe]-Hydrogenase Cofactor BiosynthesisTakashi Fujishiro, Liping Bai, Tao Xu, et al.
Dalton Transactions (Cambridge, England : 2003)|March 12, 2010
The iron-site structure of [Fe]-hydrogenase and model systems: an X-ray absorption near edge spectroscopy studyMarco Salomone-Stagni, Francesco Stellato, C Matthew Whaley, et al.
Science (New York, N.Y.)|July 26, 2008
The crystal structure of [Fe]-hydrogenase reveals the geometry of the active siteSeigo Shima, Oliver Pilak, Sonja Vogt, et al.
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