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Results: 1-22 |
Results: 22

Authors: Hage, A Petra, DGI Field, JA Schipper, D Wijnberg, JBPA Kamer, PCJ Reek, JNH van Leeuwen, PWNM Wever, R Schoemaker, HE
Citation: A. Hage et al., Asymmetric reduction of ketones via whole cell bioconversions and transferhydrogenation: complementary approaches, TETRAHEDR-A, 12(7), 2001, pp. 1025-1034

Authors: Almeida, M Filipe, S Humanes, M Maia, MF Melo, R Severino, N da Silva, JAL da Silva, JJRF Wever, R
Citation: M. Almeida et al., Vanadium haloperoxidases from brown algae of the Laminariaceae family, PHYTOCHEM, 57(5), 2001, pp. 633-642

Authors: ten Brink, HB Schoemaker, HE Wever, R
Citation: Hb. Ten Brink et al., Sulfoxidation mechanism of vanadium bromoperoxidase from Ascophyllum nodosum - Evidence for direct oxygen transfer catalysis, EUR J BIOCH, 268(1), 2001, pp. 132-138

Authors: Hage, A Schoemaker, HE Wever, R Zennaro, E Heipieper, HJ
Citation: A. Hage et al., Determination of the toxicity of several aromatic carbonylic compounds andtheir reduced derivatives on Phanerochaete chrysosporium using a Pseudomonas putida test system, BIOTECH BIO, 73(1), 2001, pp. 69-73

Authors: Wilmink, HW Stroes, ESG Erkelens, WD Gerritsen, WB Wever, R Banga, JD Rabelink, TJ
Citation: Hw. Wilmink et al., Influence of folic acid on postprandial endothelial dysfunction, ART THROM V, 20(1), 2000, pp. 185-188

Authors: ten Brink, HB Dekker, HL Shoemaker, HE Wever, R
Citation: Hb. Ten Brink et al., Oxidation reactions catalyzed by vanadium chloroperoxidase from Curvulariainaequalis, J INORG BIO, 80(1-2), 2000, pp. 91-98

Authors: Almeida, MG Humanes, M Melo, R Silva, JA da Silva, JJRF Wever, R
Citation: Mg. Almeida et al., Purification and characterisation of vanadium haloperoxidases from the brown alga Pelvetia canaliculata, PHYTOCHEM, 54(1), 2000, pp. 5-11

Authors: Tuynman, A Schoemaker, HE Wever, R
Citation: A. Tuynman et al., Enantioselective sulfoxidations catalyzed by horseradish peroxidase, manganese peroxidase, and myeloperoxidase, MONATS CHEM, 131(6), 2000, pp. 687-695

Authors: Tuynman, A Spelberg, JL Kooter, IM Schoemaker, HE Wever, R
Citation: A. Tuynman et al., Enantioselective epoxidation and carbon-carbon bond cleavage catalyzed by Coprinus cinereus peroxidase and myeloperoxidase, J BIOL CHEM, 275(5), 2000, pp. 3025-3030

Authors: Renirie, R Hemrika, W Wever, R
Citation: R. Renirie et al., Peroxidase and phosphatase activity of active-site mutants of vanadium chloroperoxidase from the fungus Curvularia inaequalis - Implications for the catalytic mechanisms, J BIOL CHEM, 275(16), 2000, pp. 11650-11657

Authors: Renirie, R Hemrika, W Piersma, SR Wever, R
Citation: R. Renirie et al., Cofactor and substrate binding to vanadium chloroperoxidase determined by UV-VIS spectroscopy and evidence for high affinity for pervanadate, BIOCHEM, 39(5), 2000, pp. 1133-1141

Authors: Hemrika, W Renirie, R Wever, R
Citation: W. Hemrika et al., Glucose-6-phosphatase - A member of the newly identified HPP superfamily that consists of histidine phosphatases and vanadium-containing peroxidases and consequences for membrane topology, active site, and reaction mechanism, MEMBRANE STRUCTURE IN DISEASE AND DRUG THERAPY, 2000, pp. 303-333

Authors: Wever, R Boer, P Hijmering, M Stroes, E Verhaar, M Kastelein, J Versluis, K Lagerwerf, F van Rijn, H Koomans, H Rabelink, T
Citation: R. Wever et al., Nitric oxide production is reduced in patients with chronic renal failure, ART THROM V, 19(5), 1999, pp. 1168-1172

Authors: ten Brink, HB Holland, HL Schoemaker, HE van Lingen, H Wever, R
Citation: Hb. Ten Brink et al., Probing the scope of the sulfoxidation activity of vanadium bromoperoxidase from Ascophyllum nodosum, TETRAHEDR-A, 10(23), 1999, pp. 4563-4572

Authors: Kooter, IM Koehler, BP Moguilevsky, N Bollen, A Wever, R Johnson, MK
Citation: Im. Kooter et al., The Met243 sulfonium ion linkage is responsible for the anomalous magneticcircular dichroism and optical spectral properties of myeloperoxidase, J BIOL I CH, 4(6), 1999, pp. 684-691

Authors: Macedo-Ribeiro, S Hemrika, W Renirie, R Wever, R Messerschmidt, A
Citation: S. Macedo-ribeiro et al., X-ray crystal structures of active site mutants of the vanadium-containingchloroperoxidase from the fungus Curvularia inaequalis, J BIOL I CH, 4(2), 1999, pp. 209-219

Authors: Kapteijn, F Moulijn, JA van Santen, RA Wever, R
Citation: F. Kapteijn et al., Chemical kinetics of catalyzed reactions, ST SURF SCI, 123, 1999, pp. 81-106

Authors: Kooter, IM Moguilevsky, N Bollen, A van der Veen, LA Otto, C Dekker, HL Wever, R
Citation: Im. Kooter et al., The sulfonium ion linkage in myeloperoxidase - Direct spectroscopic detection by isotopic labeling and effect of mutation, J BIOL CHEM, 274(38), 1999, pp. 26794-26802

Authors: Hemrika, W Renirie, R Macedo-Ribeiro, S Messerschmidt, A Wever, R
Citation: W. Hemrika et al., Heterologous expression of the vanadium-containing chloroperoxidase from Curvularia inaequalis in Saccharomyces cerevisiae and site-directed mutagenesis of the active site residues His(496), Lys(353), Arg(360), and Arg(490), J BIOL CHEM, 274(34), 1999, pp. 23820-23827

Authors: Kooter, IM Moguilevsky, N Bollen, A Sijtsema, NM Otto, C Dekker, HL Wever, R
Citation: Im. Kooter et al., Characterization of the Asp94 and Glu242 mutants in myeloperoxidase, the residues linking the heme group via ester bonds, EUR J BIOCH, 264(1), 1999, pp. 211-217

Authors: ten Brink, HB Tuynman, A Dekker, HL Hemrika, W Izumi, Y Oshiro, T Schoemaker, HE Wever, R
Citation: Hb. Ten Brink et al., Enantioselective sulfoxidation catalyzed by vanadium haloperoxidases, INORG CHEM, 37(26), 1998, pp. 6780-6784

Authors: Tuynman, A Vink, KS Dekker, HL Schoemaker, HE Wever, R
Citation: A. Tuynman et al., The sulphoxidation of thioanisole catalysed by lactoperoxidase and Coprinus cinereus peroxidase: Evidence for an oxygen-rebound mechanism, EUR J BIOCH, 258(2), 1998, pp. 906-913
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