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Probing Substrate Transport Effects on Enzymatic Hydrogen Catalysis: An Alternative Proton Transfer Pathway in Putatively Sensory [FeFe] Hydrogenase

ACS Catal. 2023-07; 
Princess R Cabotaje, Kaija Walter, Afridi Zamader, Ping Huang, Felix Ho, Henrik Land, Moritz Senger, Gustav Berggren
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Proteins, Expression, Isolation and Analysis … All chemicals were purchased from Sigma-Aldrich or VWR. Protein expression was … and cloned in pET-11a(+) by Genscript using restriction sites NdeI and BamHI following codon … Get A Quote

摘要

[FeFe] hydrogenases, metalloenzymes catalyzing proton/dihydrogen interconversion, have attracted intense attention due to their remarkable catalytic properties and (bio-)technological potential for a future hydrogen economy. In order to unravel the factors enabling their efficient catalysis, both their unique organometallic cofactors and protein structural features, i.e., "outer-coordination sphere" effects have been intensively studied. These structurally diverse enzymes are divided into distinct phylogenetic groups, denoted as Group A-D. Prototypical Group A hydrogenases display high turnover rates (10-10 s). Conversely, the sole characterized Group D representative, HydS (HydS), shows relatively low catalyt... More

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