Publications of S. Shima
All genres
Book Chapter (14)
2017
Book Chapter
Catabolic Pathways and Enzymes Involved in Anaerobic Methane Oxidation. In: Anaerobic Utilization of Hydrocarbons, Oils, and Lipids, in: Handbook of Hydrocarbon and Lipid Microbiology (Ed. Boll, M.). Springer (2017)
Book Chapter
Methanogenic metabolisms. In: Archaea Biology (Eds. Ishino, Y.; Atomi, H.). Kyoritsu-Shuppan (2017)
Book Chapter
Catabolic pathways & enzymes involved in the anaerobic oxidation of methane. In: 6-volume Handbook of Hydrocarbon and Lipid Microbiology (Ed. Boll, M.). Springer (2017)
2015
Book Chapter
Structure and function of [Fe]-hydrogenase and biosynthesis of the FeGP cofactor. In: Biohydrogen, pp. 127 - 144. De Gruyter, Berlin / Munich /Boston (2015)
2014
Book Chapter
Life under anaerobic conditions: Enzymes involved in hydrogenotrophic methanogenesis. In: Biomolecules under Extreme Environments, pp. 83 - 88 (Ed. The Chemical Society of Japan). Kagakudojin, Kyoto, Japan. (2014)
2009
Book Chapter
Carbon monoxide as intrinsic ligands to iron in the active site of [Fe]-hydrogenase. In: Metal-Carbon Bonds in Enzymes and Cofactors, Vol 6. of Metal Ions In Life Sciences, pp. 219 - 240 (Eds. Sigel, A.; Sigel, H.). John Wiley & Sons, Ltd., Cambridge, UK (2009)
2008
Book Chapter
Functions of methyl-coenzyme M reductase in production and degradation of methane. In: Applied Microbiology, pp. 182 - 183. Asakura Shoten, Tokyo (2008)
2007
Book Chapter
Methyl-coenzyme M reductase in methanogens and methanotrophs. In: Archaea, Evolution, Physiology and Molecuar Biology, pp. 275 - 283. Blackwell Publishing, Inc, Malden, USA (2007)
2006
Book Chapter
Methyl-coenzyme M reductase in methanogenic and methanotrophic archaea. In: Archaea Biology (Eds. Garrett, R.; Klenk, H.-P.). Blackwell Publishing, Inc., Malden, USA (2006)
2002
Book Chapter
Energy metabolism of methanogens. In: Great development of microorganisms, pp. 325 - 333 (Ed. Imanaka, T.). NTS inc., Tokyo (2002)
2001
Book Chapter
Methyl-coenzyme M reductase. In: Handbook of Metalloproteins, pp. 897 - 914 (Eds. Wieghardt, K.; Huber, R.; Poulus, T. L.; Messerschmidt, A.). John Wiley & sons (2001)
1998
Book Chapter
Mechanisms of methane formation. In: Biology of the Archaebacteria, pp. 190 - 205 (Eds. Koga, Y.; Kamekura, M.). University of Tokyo Press (1998)
Other (1)
2021
Other
Methanothermobacter — Biokatalysator für die Energiewende, Biospektrum 27, pp. 14 - 17 (2021)
Review Article (10)
2023
Review Article
24 (20), e202300330 (2023)
[Fe]-hydrogenase, cofactor biosynthesis and engineering. Chembiochem 2010
Review Article
79, 79, pp. 507 - 536 (2010)
Hydrogenases from methanogenic archaea, nickel, a novel cofactor, and H2 storage. Annual Review of Biochemistry 2008
Review Article
1125, pp. 158 - 170 (2008)
Methane as Fuel for Anaerobic Microorganisms. Annals of the New York Academy of Sciences 2007
Review Article
7 (1), pp. 37 - 46 (2007)
A third type of hydrogenase catalyzing H2 activation. The Chemical Record 2006
Review Article
440 (7086), pp. 878 - 879 (2006)
Biogeochemistry: Methane and microbes. Nature
Review Article
64, pp. 23 - 6 (2006)
Anaearobic methane oxidation by archaea: a biochemical approach. Bioscience & Industry 2004
Review Article
32, pp. 269 - 272 (2004)
Hyperthermophilic and salt-dependent formyltransferase from Methanopyrus kandleri. Biochemical Society Transactions