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Results: 122
Number of items: 122
  • Hage, A., Petra, D. G. I., Field, J. A., Schipper, D., Wijnberg, J. B., Kamer, P. C. J., Reek, J. N. H., van Leeuwen, P. W. N. M., Wever, R., & Schoemaker, H. E. (2001). Asymmetric reduction of ketones via whole cell bioconversions and transfer hydrogenation approaches: complementary approaches. Tetrahedron-Asymmetry, 12(1025-1034).
  • Almeida, L. B., Filipe, S., Humanes, M., Maia, M. F., Melo, R., Severino, N., Wever, R., da Silva Ulrich, J. A., & Silva, J. J. R. F. (2001). Vanadium haloperoxidases from brown algae of the Laminariaceae family. Phytochemistry, 633-642.
  • ten Brink, H. B., Schoemaker, H. E., & Wever, R. (2001). Sulfoxidation mechanism of vanadium bromoperoxidase from Ascophyllum nodosum: Evidence for direct oxygen transfer catalysis. European Journal of Biochemistry, 268(1), 132-138. https://doi.org/10.1046/j.1432-1327.2001.01856.x
  • Hage, A., Schoemaker, H. E., Wever, R., Zennaro, E., & Heipieper, H. J. (2001). Determination of the toxicity of several aromatic carbonylic compounds and their reduced derivatives on Phanerochaete chrysosporium using a Pseudomonas putida test system. Biotechnology and Bioengineering, 73, 69-73.
  • Wever, R., & Hemrika, W. (2001). Vanadium Haloperoxidases. In A. Messerschmidt (Ed.), Handbook of Metalloproteins John Wiley & Sons. https://doi.org/10.1002/0470028637.met204
  • Open Access
    Hage, A. (2001). Biocatalytic conversions by white-rot funghi: exploting teh reductive enzyme system. [Thesis, fully internal, Universiteit van Amsterdam].
  • Hemrika, W., Renirie, R., & Wever, R. (2000). 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. In G. Zummer (Ed.), Membrane structure in disease and drug therapy Marcel Dekker.
  • ten Brink, H. B., Dekker, H. L., Schoemaker, H. E., & Wever, R. (2000). Oxidation reactions catalyzed by vanadium chloroperoxidase from Curvularia Inaequalis. Journal of inorganic biochemistry, 80, 91-98. https://doi.org/10.1016/S0162-0134(00)00044-1
  • Renirie, R. (2000). Peroxidase and phosphatase activity of vanadium chloroperoxidase from the fungus Curvularia inaequalis. [Thesis, fully internal, Universiteit van Amsterdam].
  • Renirie, R., Hemrika, W., Piersma, S. R., & Wever, R. (2000). Cofactor and substrate binding to vanadium chloroperoxidas determined by UV-VIS spectroscopy and evidence for high affinity for pervanadate. Biochemistry, 39, 1133-1141. https://doi.org/10.1021/bi9921790
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