47 Publications (Page 2 of 2)
2004
Probing the reactivity of Ni in the active site of methyl-coenzyme M reductase with substrate analogues.Goenrich, Meike⋅Mahlert, Felix⋅Duin, Eduardus C⋅Bauer, Carsten⋅Jaun, Bernhard and Thauer, Rudolf KJournal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry, vol. 9, (no. 6), pp. 691-705, 2004/Sep.
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Spectroscopic investigation of the nickel-containing porphinoid cofactor F(430). Comparison of the free cofactor in the (+)1, (+)2 and (+)3 oxidation states with the cofactor bound to methyl-coenzyme M reductase in the silent, red and ox forms.Duin, Eduardus C⋅Signor, Luca⋅Piskorski, Rafal⋅Mahlert, Felix⋅Clay, Michael D⋅Goenrich, Meike⋅Thauer, Rudolf K⋅Jaun, Bernhard and Johnson, Michael KJournal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry. , vol. 9, (no. 5), pp. 563-76, 2004/Jul.
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2003
Characterization of the MCRred2 form of methyl-coenzyme M reductase: a pulse EPR and ENDOR study.Finazzo, Cinzia⋅Finazzo, C.⋅Harmer, J.⋅Harmer, Jeffrey⋅Jaun, B.⋅Jaun, Bernhard⋅Duin, E. C.⋅Duin, Eduardus C⋅Mahlert, F.⋅Mahlert, Felix⋅Thauer, Rudolf K⋅Thauer, R. K.⋅Van Doorslaer, Sabine⋅Van Doorslaer, S.⋅Schweiger, A. and Schweiger, ArthurJournal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry, vol. 8, (no. 5), pp. 586-93, 2003/May.
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Coenzyme B induced coordination of coenzyme M via its thiol group to Ni(I) of F430 in active methyl-coenzyme M reductase.Finazzo, Cinzia⋅Harmer, Jeffrey⋅Bauer, Carsten⋅Jaun, Bernhard⋅Duin, Eduardus C⋅Mahlert, Felix⋅Goenrich, Meike⋅Thauer, Rudolf K⋅Van Doorslaer, Sabine and Schweiger, ArthurJournal of the American Chemical Society, vol. 125, (no. 17), pp. 4988-9, 2003/Apr/30.
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Coenzyme M binds to a [4Fe-4S] cluster in the active site of heterodisulfide reductase as deduced from EPR studies with the [33S]coenzyme M-treated enzyme.Duin, Eduardus C⋅Bauer, Carsten⋅Jaun, Bernhard and Hedderich, ReinerFEBS letters. , vol. 538, (no. 1-3), pp. 81-4, 2003/Mar/13.
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Coordination and geometry of the nickel atom in active methyl-coenzyme M reductase from Methanothermobacter marburgensis as detected by X-ray absorption spectroscopy.Duin, Eduardus C⋅Cosper, Nathaniel J⋅Mahlert, Felix⋅Thauer, Rudolf K and Scott, Robert AJournal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry, vol. 8, (no. 1-2), pp. 141-8, 2003/Jan.
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Physiological role of the F420-non-reducing hydrogenase (Mvh) from Methanothermobacter marburgensis.Stojanowic, Alexander⋅Mander, Gerd J⋅Duin, Eduardus C and Hedderich, ReinerArchives of microbiology, vol. 180, (no. 3), pp. 194-203, 2003/Sep.
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2002
Functional characterization of GcpE, an essential enzyme of the non-mevalonate pathway of isoprenoid biosynthesis.Kollas, Ann-Kristin⋅Duin, Eduardus C⋅Eberl, Matthias⋅Altincicek, Boran⋅Hintz, Martin⋅Reichenberg, Armin⋅Henschker, Dajana⋅Henne, Anke⋅Steinbrecher, Irina⋅Ostrovsky, Dmitry N⋅Hedderich, Reiner⋅Beck, Ewald⋅Jomaa, Hassan and Wiesner, JochenFEBS letters, vol. 532, (no. 3), pp. 432-6, 2002/Dec/18.
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Heterodisulfide reductase from Methanothermobacter marburgensis contains an active-site [4Fe-4S] cluster that is directly involved in mediating heterodisulfide reductionDuin, Eduardus C⋅Madadi-Kahkesh, S.⋅Hedderich, R.⋅Clay, M. D and Johnson, Michael KFEBS Letters, vol. 512, (no. 1-3), pp. 263-268, 2002.
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LytB protein catalyzes the terminal step of the 2-C-methyl-D-erythritol-4-phosphate pathway of isoprenoid biosynthesis.Altincicek, Boran⋅Duin, Eduardus C⋅Reichenberg, Armin⋅Hedderich, Reiner⋅Kollas, Ann-Kristin⋅Hintz, Martin⋅Wagner, Stefanie⋅Wiesner, Jochen⋅Beck, Ewald and Jomaa, HassanFEBS letters, vol. 532, (no. 3), pp. 437-40, 2002/Dec/18.
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Purification and characterization of a membrane-bound enzyme complex from the sulfate-reducing archaeon Archaeoglobus fulgidus related to heterodisulfide reductase from methanogenic archaeaMander, GJ⋅Duin, Eduardus C⋅Linder, D.⋅Stetter, Karl O and Hedderich, R.European Journal of Biochemistry, vol. 269, (no. 7), pp. 1895-1904, 2002.
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The nickel enzyme methyl-coenzyme M reductase from methanogenic archaea: In vitro induction of the nickel-based MCR-ox EPR signals from MCR-red2.Mahlert, Felix⋅Bauer, Carsten⋅Jaun, Bernhard⋅Thauer, Rudolf K and Duin, Eduardus CJournal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry, vol. 7, (no. 4-5), pp. 500-13, 2002/Apr.
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The nickel enzyme methyl-coenzyme M reductase from methanogenic archaea: in vitro interconversions among the EPR detectable MCR-red1 and MCR-red2 states.Mahlert, Felix⋅Grabarse, Wolfgang⋅Kahnt, Jörg⋅Thauer, Rudolf K and Duin, Eduardus CJournal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry, vol. 7, (no. 1-2), pp. 101-12, 2002/Jan.
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2001
A paramagnetic species with unique EPR characteristics in the active site of heterodisulfide reductase from methanogenic archaeaMadadi-Kahkesh, S.⋅Duin, Eduardus C⋅Heim, S.⋅Albracht, SPJ⋅Johnson, Michael K and Hedderich, R.European Journal of Biochemistry, vol. 268, (no. 9), pp. 2566-2577, 2001.
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On the Mechanism of Biological Methane Formation: Structural Evidence for Conformational Changes in Methyl-coenzyme M Reductase upon Substrate BindingGrabarse, W.⋅Mahlert, F.⋅Duin, Eduardus C⋅Goubeaud, M.⋅Shima, S.⋅Thauer, RK⋅Lamzin, V. and Ermler, U.Journal of Molecular Biology, vol. 309, (no. 1), pp. 315-330, 2001.
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2000
Eukaryotically Encoded and Chloroplast-located Rubredoxin Is Associated with Photosystem IIWastl, J.⋅Duin, Eduardus C⋅Iuzzolino, L.⋅Doerner, W.⋅Link, T.⋅Hoffmann, Silke⋅Sticht, H.⋅Dau, H.⋅Lingelbach, K. and Maier, Uwe GJournal of Biological Chemistry, vol. 275, (no. 39), pp. 30058-30063, 2000.
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1998
Extensive ligand rearrangements around the [2Fe-2S] cluster of Clostridium pasteurianum ferredoxinGolinelli, M-P⋅Chatelet, C.⋅Duin, Eduardus C⋅Johnson, Michael K and Meyer, J.Biochemistry (Washington), vol. 37, (no. 29), pp. 10429-10437, 1998.
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1997
[2Fe-2S] to [4Fe-4S] cluster conversion in Escherichia coli biotin synthaseDuin, Eduardus C⋅Lafferty, Meghan⋅Crouse, BR⋅Allen, RM⋅Sanyal, I.⋅Flint, DH and Johnson, Michael KBiochemistry (Washington), vol. 36, (no. 39), pp. 11811-11820, 1997.
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Changes in the electronic structure around Ni in oxidized and reduced selenium-containing hydrogenases from Methanococcus voltae.Sorgenfrei, O⋅Duin, Eduardus C⋅Klein, A and Albracht, S PEuropean journal of biochemistry / FEBS, vol. 247, (no. 2), pp. 681-7, 1997/Jul/15.
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1995
Infrared-detectable groups sense changes in charge density on the nickel center in hydrogenase from Chromatium vinosum.Bagley, Kimberly A⋅Duin, Eduardus C⋅Roseboom, W⋅Albracht, S P and Woodruff, W HBiochemistry, vol. 34, (no. 16), pp. 5527-35, 1995/Apr/25.
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1994
Further characterization of the spin coupling observed in oxidized hydrogenase from Chromatium vinosum. A Mössbauer and multifrequency EPR study.Surerus, Kristene K⋅Chen, M⋅van der Zwaan, J W⋅Rusnak, F M⋅Kolk, M⋅Duin, Eduardus C⋅Albracht, S P and Münck, EckardBiochemistry, vol. 33, (no. 16), pp. 4980-93, 1994/Apr/26.
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Infrared studies on the interaction of carbon monoxide with divalent nickel in hydrogenase from Chromatium vinosumBagley, Kimberly A⋅Van-Garderen, CJ⋅Chen, M.⋅Duin, Eduardus C⋅Albracht, SPJ and Woodruff, WHBiochemistry (Washington), vol. 33, (no. 31), pp. 9229-9236, 1994.
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