Methyl-Coenzym-M-Reduktase (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Methyl-Coenzym-M-Reduktase" in German language version.

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doi.org

  • Rudolf K. Thauer: Biochemistry of methanogenesis: a tribute to Marjory Stephenson: 1998 Marjory Stephenson Prize Lecture. In: Microbiology. 144, Nr. 9, 1998, S. 2377–2406, doi:10.1099/00221287-144-9-2377, PMID 9782487.
  • Steven J. Hallam, Nik Putnam, Christina M. Preston, John C. Detter, Daniel Rokhsar, Paul M. Richardson, Edward F. DeLong: Reverse Methanogenesis: Testing the Hypothesis with Environmental Genomics. In: Science. 305, Nr. 5689, 2004, S. 1457–1462, doi:10.1126/science.1100025, PMID 15353801.
  • Silvan Scheller, Meike Goenrich, Reinhard Boecher, Rudolf K. Thauer, Bernhard Jaun: The key nickel enzyme of methanogenesis catalyses the anaerobic oxidation of methane. In: Nature. 465, Nr. 7298, 2010, S. 606–608, doi:10.1038/nature09015.
  • Ulrich Ermler, Wolfgang Grabarse, Seigo Shima, Marcel Goubeaud, Rudolf K. Thauer: Crystal Structure of Methyl-Coenzyme M Reductase: The Key Enzyme of Biological Methane Formation. In: Science. 278, Nr. 5342, 1997, S. 1457–1462, doi:10.1126/science.278.5342.1457, PMID 9367957.
  • Seigo Shima, Martin Krueger, Tobias Weinert, Ulrike Demmer, Jörg Kahnt, Rudolf K. Thauer, Ulrich Ermler: Structure of a methyl-coenzyme M reductase from Black Sea mats that oxidize methane anaerobically. In: Nature. 481, Nr. 7379, 2012, S. 98–101, doi:10.1038/nature10663.
  • S. Rospert, R. Böcher, S. P. J. Albracht, R. K. Thauer: Methyl-coenzyme M reductase preparations with high specific activity from H2-preincubated cells of Methanobacterium thermoautotrophicum. In: FEBS Letters. 291, Nr. 2, 1991, S. 371–375, doi:10.1016/0014-5793(91)81323-Z.
  • Divya Prakash, Yonnie Wu, Sang-Jin Suh, Evert C. Duin: Elucidating the Process of Activation of Methyl-Coenzyme M Reductase. In: Journal of Bacteriology. 196, Nr. 13, 2014, S. 2491–2498, doi:10.1128/JB.01658-14, PMID 24769699.
  • Silvan Scheller, Meike Goenrich, Rudolf K. Thauer, Bernhard Jaun: Methyl-Coenzyme M Reductase from Methanogenic Archaea: Isotope Effects on the Formation and Anaerobic Oxidation of Methane. In: Journal of the American Chemical Society. 135, Nr. 40, 2013, S. 14975–14984, doi:10.1021/ja406485z.
  • Silvan Scheller, Meike Goenrich, Stefan Mayr, Rudolf K. Thauer, Bernhard Jaun: Zwischenprodukte im Katalysezyklus von Methyl-Coenzym-M-Reduktase: Das Muster des Isotopenaustauschs ist in Einklang mit der Bildung eines σ-Alkan-Nickel-Komplexes. In: Angewandte Chemie. 122, Nr. 44, 2010, S. 8289–8292, doi:10.1002/ange.201003214.
  • Jeffrey Harmer u. a.: A Nickel Hydride Complex in the Active Site of Methyl-Coenzyme M Reductase: Implications for the Catalytic Cycle. In: Journal of the American Chemical Society. 130, Nr. 33, 2008, S. 10907–10920, doi:10.1021/ja710949e.
  • Na Yang, Markus Reiher, Mi Wang, Jeffrey Harmer, Evert C. Duin: Formation of a Nickel-Methyl Species in Methyl-Coenzyme M Reductase, an Enzyme Catalyzing Methane Formation. In: Journal of the American Chemical Society. 129, Nr. 36, 2007, S. 11028–11029, doi:10.1021/ja0734501.
  • Dariush Hinderberger, Rafal P. Piskorski, Meike Goenrich, Rudolf K. Thauer, Arthur Schweiger, Jeffrey Harmer, Bernhard Jaun: A Nickel–Alkyl Bond in an Inactivated State of the Enzyme Catalyzing Methane Formation. In: Angewandte Chemie International Edition. 45, Nr. 22, 2006, S. 3602–3607, doi:10.1002/anie.200600366.
  • Jeffrey Harmer u. a.: Spin Density and Coenzyme M Coordination Geometry of the ox1 Form of Methyl-Coenzyme M Reductase:  A Pulse EPR Study. In: Journal of the American Chemical Society. 127, Nr. 50, 2005, S. 17744–17755, doi:10.1021/ja053794w.
  • Bernhard Jaun: Coenzyme F430 from Methanogenic Bacteria: Oxidation of F430 Pentamethyl Ester to the Ni(III) Form. In: Helvetica Chimica Acta. 73, Nr. 8, 1990, S. 2209–2217, doi:10.1002/hlca.19900730818.
  • Xianghui Li, Joshua Telser, Ryan C. Kunz, Brian M. Hoffman, Gary Gerfen, Stephen W. Ragsdale: Observation of Organometallic and Radical Intermediates Formed during the Reaction of Methyl-Coenzyme M Reductase with Bromoethanesulfonate. In: Biochemistry. 49, Nr. 32, 2010, S. 6866–6876, doi:10.1021/bi100650m.
  • Yonghyun Ahn, Joseph A. Krzycki, Heinz G. Floss: Steric course of the reduction of ethyl coenzyme M to ethane catalyzed by methyl coenzyme M reductase from Methanosarcina barkeri. In: Journal of the American Chemical Society. 113, Nr. 12, 1991, S. 4700–4701, doi:10.1021/ja00012a059.
  • Vladimir Pelmenschikov, Margareta R. A. Blomberg, Per E. M. Siegbahn, Robert H. Crabtree: A Mechanism from Quantum Chemical Studies for Methane Formation in Methanogenesis. In: Journal of the American Chemical Society. 124, Nr. 15, 2002, S. 4039–4049, doi:10.1021/ja011664r.
  • Shi-Lu Chen, Margareta R. A. Blomberg, Per E. M. Siegbahn: An investigation of possible competing mechanisms for Ni-containing methyl–coenzyme M reductase. In: Physical Chemistry Chemical Physics. 16, Nr. 27, 2014, S. 14029–14035, doi:10.1039/C4CP01483A.
  • Evert C. Duin, Michael L. McKee: A New Mechanism for Methane Production from Methyl-Coenzyme M Reductase As Derived from Density Functional Calculations. In: The Journal of Physical Chemistry B. 112, Nr. 8, 2008, S. 2466–2482, doi:10.1021/jp709860c.

ebi.ac.uk

nih.gov

ncbi.nlm.nih.gov

  • Rudolf K. Thauer: Biochemistry of methanogenesis: a tribute to Marjory Stephenson: 1998 Marjory Stephenson Prize Lecture. In: Microbiology. 144, Nr. 9, 1998, S. 2377–2406, doi:10.1099/00221287-144-9-2377, PMID 9782487.
  • Steven J. Hallam, Nik Putnam, Christina M. Preston, John C. Detter, Daniel Rokhsar, Paul M. Richardson, Edward F. DeLong: Reverse Methanogenesis: Testing the Hypothesis with Environmental Genomics. In: Science. 305, Nr. 5689, 2004, S. 1457–1462, doi:10.1126/science.1100025, PMID 15353801.
  • Ulrich Ermler, Wolfgang Grabarse, Seigo Shima, Marcel Goubeaud, Rudolf K. Thauer: Crystal Structure of Methyl-Coenzyme M Reductase: The Key Enzyme of Biological Methane Formation. In: Science. 278, Nr. 5342, 1997, S. 1457–1462, doi:10.1126/science.278.5342.1457, PMID 9367957.
  • Divya Prakash, Yonnie Wu, Sang-Jin Suh, Evert C. Duin: Elucidating the Process of Activation of Methyl-Coenzyme M Reductase. In: Journal of Bacteriology. 196, Nr. 13, 2014, S. 2491–2498, doi:10.1128/JB.01658-14, PMID 24769699.

zdb-katalog.de

  • Michael W. Friedrich: Methyl‐Coenzyme M Reductase Genes: Unique Functional Makers for Methanogenic and Anaerobic Methane‐Oxidizing Archaea. In: Methods in Enzymology. Volume 397,2005, ISSN 0076-6879, S. 428–442.
  • David Dophin: Preparation of the reduced forms of vitamin B12 and of some analogs of the vitamin B12 coenzyme containing a cobalt-carbon bond. In: D. Dolphin: Donald B. McCormick and Lemuel D. Wright (Hrsg.): Methods in Enzymology. Volume 18, Part C, 1971, ISSN 0076-6879, S. 34–52.