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The Journal of Biological Chemistry|May 26, 2017
Proteolytic cleavage orchestrates cofactor insertion and protein assembly in [NiFe]-hydrogenase biosynthesisMoritz Senger, Sven T Stripp, Basem Soboh
Chemical Communications (Cambridge, England)|June 7, 2022
Hydride state accumulation in native [FeFe]-hydrogenase with the physiological reductant H2 supports its catalytic relevanceMoritz Senger, Tobias Kernmayr, Marco Lorenzi, et al.
Chemical Communications (Cambridge, England)|September 10, 2024
Secondary structure changes as the potential H2 sensing mechanism of group D [FeFe]-hydrogenasesIvan Voloshyn, Conrad Schumann, Princess R Cabotaje, et al.
Angewandte Chemie (International Ed. in English)|July 24, 2026
Beyond Canonical CO Oxidation: Structural and Evolutionary Insights Into a Non-Canonical Carbon Monoxide DehydrogenaseMaximilian Böhm, Vivek Srinivas, Benjamin Wiseman, et al.
ACS Sustainable Chemistry & Engineering|August 29, 2022
Light-Driven [FeFe] Hydrogenase Based H2 Production in E. coli: A Model Reaction for Exploring E. coli Based Semiartificial Photosynthetic SystemsMarco Lorenzi, Mira T Gamache, Holly J Redman, et al.
Inorganic Chemistry|June 22, 2022
Trapping an Oxidized and Protonated Intermediate of the [FeFe]-Hydrogenase Cofactor under Mildly Reducing ConditionsMoritz Senger, Jifu Duan, Mariia V Pavliuk, et al.
Physical Chemistry Chemical Physics : PCCP|April 28, 2025
Indications for a universal hydrogen catalysis mechanism in [FeFe]-hydrogenases of different phylogenetic groupsMoritz Senger, Conrad Schumann, Princess R Cabotaje, et al.
Physiologia Plantarum|April 16, 2021
Photosynthetic hydrogen production: Novel protocols, promising engineering approaches and application of semi-synthetic hydrogenasesSergey Kosourov, Maximilian Böhm, Moritz Senger, et al.
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