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![Protein Film Infrared Electrochemistry Demonstrated for Study of H2 Oxidation by a [NiFe] Hydrogenase](/_next/image?url=https%3A%2F%2Fcloudfront.jove.com%2FCDNSource%2Fteasers%2F55858.jpg&w=3840&q=50)
Protein Film Infrared Electrochemistry Demonstrated for Study of H2 Oxidation by a [NiFe] Hydrogenase
Published on: December 4, 2017
Isocyanides as a Chemical Tool for Identifying [Fe]-Hydrogenase-Dependent Methanogenesis
Shunsuke Nomura1, Seigo Shima1
1Microbial Protein Structure Group, Max Planck Institute for Terrestrial Microbiology, Marburg, Germany.
Abstract:
In the hydrogenotrophic methanogens cultivated under nickel-sufficient standard medium (~5 µM Ni2+), two cytosolic [NiFe]-hydrogenases, F420-reducing hydrogenase (Frh) and heterodisulfide reductase (Hdr)-associating hydrogenase (Mvh), mainly provide electrons to the methanogenic pathway. In Methanothermobacter marburgensis under strictly nickel-limited conditions (< 50 nM Ni2+), which are encountered in certain natural environments, Frh and Mvh are strongly downregulated. Under these conditions, a coupled reaction with [Fe]-hydrogenase (Hmd) and F420-dependent methylene-tetrahydromethanopterin dehydrogenase (Mtd) substitutes for the function of Frh, where F420-dependent electron-donating protein (Elp) complexes with Hdr and donates electrons from the reduced form of F420 to Hdr. Thus, Hmd mainly provides electrons to methanogenesis in nickel-limited environments. In this study, to evaluate the potential of isocyanides as an Hmd-specific chemical tool to probe this pathway, we determined their inhibitory effects on the H2-dependent F420-reducing activity in the cell extract and on the in vitro methanogenesis reaction in a cell extract and in a cell suspension. Isocyanides specifically inhibited the activities of the samples from nickel-limited cells. The inhibitory effect on the cell suspension was strengthened by the use of a hydrophobic isocyanide. These results demonstrate their potential as a chemical tool for identifying in situ Hmd-dependent methanogenesis activity in natural environmental samples.
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